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51bbfa0c 1/* Convert function calls to rtl insns, for GNU C compiler.
3c71940f
JL
2 Copyright (C) 1989, 1992, 1993, 1994, 1995, 1996, 1997, 1998
3 1999, 2000 Free Software Foundation, Inc.
51bbfa0c
RS
4
5This file is part of GNU CC.
6
7GNU CC is free software; you can redistribute it and/or modify
8it under the terms of the GNU General Public License as published by
9the Free Software Foundation; either version 2, or (at your option)
10any later version.
11
12GNU CC is distributed in the hope that it will be useful,
13but WITHOUT ANY WARRANTY; without even the implied warranty of
14MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15GNU General Public License for more details.
16
17You should have received a copy of the GNU General Public License
18along with GNU CC; see the file COPYING. If not, write to
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RK
19the Free Software Foundation, 59 Temple Place - Suite 330,
20Boston, MA 02111-1307, USA. */
51bbfa0c
RS
21
22#include "config.h"
670ee920
KG
23#include "system.h"
24#include "rtl.h"
25#include "tree.h"
26#include "flags.h"
27#include "expr.h"
49ad7cfa 28#include "function.h"
670ee920 29#include "regs.h"
51bbfa0c 30#include "insn-flags.h"
5f6da302 31#include "toplev.h"
d6f4ec51 32#include "output.h"
b1474bb7 33#include "tm_p.h"
ea11ca7e 34#include "timevar.h"
c67846f2 35#include "sbitmap.h"
51bbfa0c 36
f73ad30e
JH
37#ifndef ACCUMULATE_OUTGOING_ARGS
38#define ACCUMULATE_OUTGOING_ARGS 0
39#endif
40
41/* Supply a default definition for PUSH_ARGS. */
42#ifndef PUSH_ARGS
43#ifdef PUSH_ROUNDING
44#define PUSH_ARGS !ACCUMULATE_OUTGOING_ARGS
45#else
46#define PUSH_ARGS 0
47#endif
48#endif
49
0a1c58a2
JL
50#if !defined FUNCTION_OK_FOR_SIBCALL
51#define FUNCTION_OK_FOR_SIBCALL(DECL) 1
52#endif
53
c795bca9
BS
54#if !defined PREFERRED_STACK_BOUNDARY && defined STACK_BOUNDARY
55#define PREFERRED_STACK_BOUNDARY STACK_BOUNDARY
56#endif
57
51bbfa0c 58/* Decide whether a function's arguments should be processed
bbc8a071
RK
59 from first to last or from last to first.
60
61 They should if the stack and args grow in opposite directions, but
62 only if we have push insns. */
51bbfa0c 63
51bbfa0c 64#ifdef PUSH_ROUNDING
bbc8a071 65
40083ddf 66#if defined (STACK_GROWS_DOWNWARD) != defined (ARGS_GROW_DOWNWARD)
f73ad30e 67#define PUSH_ARGS_REVERSED PUSH_ARGS
51bbfa0c 68#endif
bbc8a071 69
51bbfa0c
RS
70#endif
71
f73ad30e
JH
72#ifndef PUSH_ARGS_REVERSED
73#define PUSH_ARGS_REVERSED 0
74#endif
75
c795bca9
BS
76/* Like PREFERRED_STACK_BOUNDARY but in units of bytes, not bits. */
77#define STACK_BYTES (PREFERRED_STACK_BOUNDARY / BITS_PER_UNIT)
51bbfa0c
RS
78
79/* Data structure and subroutines used within expand_call. */
80
81struct arg_data
82{
83 /* Tree node for this argument. */
84 tree tree_value;
1efe6448
RK
85 /* Mode for value; TYPE_MODE unless promoted. */
86 enum machine_mode mode;
51bbfa0c
RS
87 /* Current RTL value for argument, or 0 if it isn't precomputed. */
88 rtx value;
89 /* Initially-compute RTL value for argument; only for const functions. */
90 rtx initial_value;
91 /* Register to pass this argument in, 0 if passed on stack, or an
cacbd532 92 PARALLEL if the arg is to be copied into multiple non-contiguous
51bbfa0c
RS
93 registers. */
94 rtx reg;
099e9712
JH
95 /* Register to pass this argument in when generating tail call sequence.
96 This is not the same register as for normal calls on machines with
97 register windows. */
98 rtx tail_call_reg;
84b55618
RK
99 /* If REG was promoted from the actual mode of the argument expression,
100 indicates whether the promotion is sign- or zero-extended. */
101 int unsignedp;
51bbfa0c
RS
102 /* Number of registers to use. 0 means put the whole arg in registers.
103 Also 0 if not passed in registers. */
104 int partial;
d64f5a78
RS
105 /* Non-zero if argument must be passed on stack.
106 Note that some arguments may be passed on the stack
107 even though pass_on_stack is zero, just because FUNCTION_ARG says so.
108 pass_on_stack identifies arguments that *cannot* go in registers. */
51bbfa0c
RS
109 int pass_on_stack;
110 /* Offset of this argument from beginning of stack-args. */
111 struct args_size offset;
112 /* Similar, but offset to the start of the stack slot. Different from
113 OFFSET if this arg pads downward. */
114 struct args_size slot_offset;
115 /* Size of this argument on the stack, rounded up for any padding it gets,
116 parts of the argument passed in registers do not count.
117 If REG_PARM_STACK_SPACE is defined, then register parms
118 are counted here as well. */
119 struct args_size size;
120 /* Location on the stack at which parameter should be stored. The store
121 has already been done if STACK == VALUE. */
122 rtx stack;
123 /* Location on the stack of the start of this argument slot. This can
124 differ from STACK if this arg pads downward. This location is known
125 to be aligned to FUNCTION_ARG_BOUNDARY. */
126 rtx stack_slot;
51bbfa0c
RS
127 /* Place that this stack area has been saved, if needed. */
128 rtx save_area;
4ab56118
RK
129 /* If an argument's alignment does not permit direct copying into registers,
130 copy in smaller-sized pieces into pseudos. These are stored in a
131 block pointed to by this field. The next field says how many
132 word-sized pseudos we made. */
133 rtx *aligned_regs;
134 int n_aligned_regs;
4fc026cd
CM
135 /* The amount that the stack pointer needs to be adjusted to
136 force alignment for the next argument. */
137 struct args_size alignment_pad;
51bbfa0c
RS
138};
139
b94301c2 140/* A vector of one char per byte of stack space. A byte if non-zero if
51bbfa0c
RS
141 the corresponding stack location has been used.
142 This vector is used to prevent a function call within an argument from
143 clobbering any stack already set up. */
144static char *stack_usage_map;
145
146/* Size of STACK_USAGE_MAP. */
147static int highest_outgoing_arg_in_use;
2f4aa534 148
c67846f2
JJ
149/* A bitmap of virtual-incoming stack space. Bit is set if the corresponding
150 stack location's tail call argument has been already stored into the stack.
151 This bitmap is used to prevent sibling call optimization if function tries
152 to use parent's incoming argument slots when they have been already
153 overwritten with tail call arguments. */
154static sbitmap stored_args_map;
155
2f4aa534
RS
156/* stack_arg_under_construction is nonzero when an argument may be
157 initialized with a constructor call (including a C function that
158 returns a BLKmode struct) and expand_call must take special action
159 to make sure the object being constructed does not overlap the
160 argument list for the constructor call. */
161int stack_arg_under_construction;
51bbfa0c 162
3d994c6b
KG
163static int calls_function PARAMS ((tree, int));
164static int calls_function_1 PARAMS ((tree, int));
0a1c58a2 165
f725a3ec 166/* Nonzero if this is a call to a `const' function. */
f2d33f13
JH
167#define ECF_CONST 1
168/* Nonzero if this is a call to a `volatile' function. */
169#define ECF_NORETURN 2
f725a3ec 170/* Nonzero if this is a call to malloc or a related function. */
f2d33f13
JH
171#define ECF_MALLOC 4
172/* Nonzero if it is plausible that this is a call to alloca. */
173#define ECF_MAY_BE_ALLOCA 8
174/* Nonzero if this is a call to a function that won't throw an exception. */
175#define ECF_NOTHROW 16
176/* Nonzero if this is a call to setjmp or a related function. */
177#define ECF_RETURNS_TWICE 32
178/* Nonzero if this is a call to `longjmp'. */
179#define ECF_LONGJMP 64
180/* Nonzero if this is a syscall that makes a new process in the image of
181 the current one. */
182#define ECF_FORK_OR_EXEC 128
183#define ECF_SIBCALL 256
2a8f6b90
JH
184/* Nonzero if this is a call to "pure" function (like const function,
185 but may read memory. */
186#define ECF_PURE 512
7393c642
RK
187/* Nonzero if this is a call to a function that returns with the stack
188 pointer depressed. */
189#define ECF_SP_DEPRESSED 1024
f2d33f13 190
3d994c6b
KG
191static void emit_call_1 PARAMS ((rtx, tree, tree, HOST_WIDE_INT,
192 HOST_WIDE_INT, HOST_WIDE_INT, rtx,
0a1c58a2 193 rtx, int, rtx, int));
3d994c6b
KG
194static void precompute_register_parameters PARAMS ((int,
195 struct arg_data *,
196 int *));
4c6b3b2a 197static int store_one_arg PARAMS ((struct arg_data *, rtx, int, int,
3d994c6b
KG
198 int));
199static void store_unaligned_arguments_into_pseudos PARAMS ((struct arg_data *,
200 int));
201static int finalize_must_preallocate PARAMS ((int, int,
202 struct arg_data *,
203 struct args_size *));
40d6e956
JH
204static void precompute_arguments PARAMS ((int, int,
205 struct arg_data *));
f725a3ec 206static int compute_argument_block_size PARAMS ((int,
c2f8b491
JH
207 struct args_size *,
208 int));
3d994c6b
KG
209static void initialize_argument_information PARAMS ((int,
210 struct arg_data *,
211 struct args_size *,
212 int, tree, tree,
213 CUMULATIVE_ARGS *,
214 int, rtx *, int *,
f2d33f13 215 int *, int *));
3d994c6b
KG
216static void compute_argument_addresses PARAMS ((struct arg_data *,
217 rtx, int));
218static rtx rtx_for_function_call PARAMS ((tree, tree));
219static void load_register_parameters PARAMS ((struct arg_data *,
099e9712 220 int, rtx *, int));
12a22e76 221static int libfunc_nothrow PARAMS ((rtx));
ebb1b59a
BS
222static rtx emit_library_call_value_1 PARAMS ((int, rtx, rtx,
223 enum libcall_type,
de76b467
JH
224 enum machine_mode,
225 int, va_list));
f2d33f13
JH
226static int special_function_p PARAMS ((tree, int));
227static int flags_from_decl_or_type PARAMS ((tree));
228static rtx try_to_integrate PARAMS ((tree, tree, rtx,
229 int, tree, rtx));
c67846f2
JJ
230static int check_sibcall_argument_overlap_1 PARAMS ((rtx));
231static int check_sibcall_argument_overlap PARAMS ((rtx, struct arg_data *));
232
ce48579b 233static int combine_pending_stack_adjustment_and_call
739fb049 234 PARAMS ((int, struct args_size *, int));
21a3b983 235
f73ad30e 236#ifdef REG_PARM_STACK_SPACE
3d994c6b
KG
237static rtx save_fixed_argument_area PARAMS ((int, rtx, int *, int *));
238static void restore_fixed_argument_area PARAMS ((rtx, rtx, int, int));
20efdf74 239#endif
51bbfa0c 240\f
1ce0cb53
JW
241/* If WHICH is 1, return 1 if EXP contains a call to the built-in function
242 `alloca'.
243
244 If WHICH is 0, return 1 if EXP contains a call to any function.
245 Actually, we only need return 1 if evaluating EXP would require pushing
246 arguments on the stack, but that is too difficult to compute, so we just
247 assume any function call might require the stack. */
51bbfa0c 248
1c8d7aef
RS
249static tree calls_function_save_exprs;
250
51bbfa0c 251static int
1ce0cb53 252calls_function (exp, which)
51bbfa0c 253 tree exp;
1ce0cb53 254 int which;
1c8d7aef
RS
255{
256 int val;
8d5e6e25 257
1c8d7aef
RS
258 calls_function_save_exprs = 0;
259 val = calls_function_1 (exp, which);
260 calls_function_save_exprs = 0;
261 return val;
262}
263
8d5e6e25
RK
264/* Recursive function to do the work of above function. */
265
1c8d7aef
RS
266static int
267calls_function_1 (exp, which)
268 tree exp;
269 int which;
51bbfa0c
RS
270{
271 register int i;
0207efa2 272 enum tree_code code = TREE_CODE (exp);
8d5e6e25
RK
273 int class = TREE_CODE_CLASS (code);
274 int length = first_rtl_op (code);
51bbfa0c 275
ddd5a7c1 276 /* If this code is language-specific, we don't know what it will do. */
0207efa2
RK
277 if ((int) code >= NUM_TREE_CODES)
278 return 1;
51bbfa0c 279
0207efa2 280 switch (code)
51bbfa0c
RS
281 {
282 case CALL_EXPR:
1ce0cb53
JW
283 if (which == 0)
284 return 1;
43db0363
RK
285 else if ((TREE_CODE (TREE_TYPE (TREE_TYPE (TREE_OPERAND (exp, 0))))
286 == FUNCTION_TYPE)
287 && (TYPE_RETURNS_STACK_DEPRESSED
288 (TREE_TYPE (TREE_TYPE (TREE_OPERAND (exp, 0))))))
7393c642 289 return 1;
1ce0cb53
JW
290 else if (TREE_CODE (TREE_OPERAND (exp, 0)) == ADDR_EXPR
291 && (TREE_CODE (TREE_OPERAND (TREE_OPERAND (exp, 0), 0))
8d5e6e25
RK
292 == FUNCTION_DECL)
293 && (special_function_p (TREE_OPERAND (TREE_OPERAND (exp, 0), 0),
294 0)
295 & ECF_MAY_BE_ALLOCA))
296 return 1;
51bbfa0c 297
51bbfa0c
RS
298 break;
299
300 case SAVE_EXPR:
301 if (SAVE_EXPR_RTL (exp) != 0)
302 return 0;
1c8d7aef
RS
303 if (value_member (exp, calls_function_save_exprs))
304 return 0;
305 calls_function_save_exprs = tree_cons (NULL_TREE, exp,
306 calls_function_save_exprs);
307 return (TREE_OPERAND (exp, 0) != 0
308 && calls_function_1 (TREE_OPERAND (exp, 0), which));
51bbfa0c
RS
309
310 case BLOCK:
ef03bc85
CH
311 {
312 register tree local;
8d5e6e25 313 register tree subblock;
ef03bc85
CH
314
315 for (local = BLOCK_VARS (exp); local; local = TREE_CHAIN (local))
1ce0cb53 316 if (DECL_INITIAL (local) != 0
1c8d7aef 317 && calls_function_1 (DECL_INITIAL (local), which))
ef03bc85 318 return 1;
ef03bc85
CH
319
320 for (subblock = BLOCK_SUBBLOCKS (exp);
321 subblock;
322 subblock = TREE_CHAIN (subblock))
1c8d7aef 323 if (calls_function_1 (subblock, which))
ef03bc85
CH
324 return 1;
325 }
326 return 0;
8d5e6e25 327
0c4c16df
JH
328 case TREE_LIST:
329 for (; exp != 0; exp = TREE_CHAIN (exp))
330 if (calls_function_1 (TREE_VALUE (exp), which))
331 return 1;
332 return 0;
51bbfa0c 333
e9a25f70
JL
334 default:
335 break;
51bbfa0c
RS
336 }
337
8d5e6e25
RK
338 /* Only expressions, references, and blocks can contain calls. */
339 if (! IS_EXPR_CODE_CLASS (class) && class != 'r' && class != 'b')
0c4c16df
JH
340 return 0;
341
51bbfa0c
RS
342 for (i = 0; i < length; i++)
343 if (TREE_OPERAND (exp, i) != 0
1c8d7aef 344 && calls_function_1 (TREE_OPERAND (exp, i), which))
51bbfa0c
RS
345 return 1;
346
347 return 0;
348}
349\f
350/* Force FUNEXP into a form suitable for the address of a CALL,
351 and return that as an rtx. Also load the static chain register
352 if FNDECL is a nested function.
353
77cac2f2
RK
354 CALL_FUSAGE points to a variable holding the prospective
355 CALL_INSN_FUNCTION_USAGE information. */
51bbfa0c 356
03dacb02 357rtx
77cac2f2 358prepare_call_address (funexp, fndecl, call_fusage, reg_parm_seen)
51bbfa0c
RS
359 rtx funexp;
360 tree fndecl;
77cac2f2 361 rtx *call_fusage;
01368078 362 int reg_parm_seen;
51bbfa0c
RS
363{
364 rtx static_chain_value = 0;
365
366 funexp = protect_from_queue (funexp, 0);
367
368 if (fndecl != 0)
0f41302f 369 /* Get possible static chain value for nested function in C. */
51bbfa0c
RS
370 static_chain_value = lookup_static_chain (fndecl);
371
372 /* Make a valid memory address and copy constants thru pseudo-regs,
373 but not for a constant address if -fno-function-cse. */
374 if (GET_CODE (funexp) != SYMBOL_REF)
01368078 375 /* If we are using registers for parameters, force the
e9a25f70
JL
376 function address into a register now. */
377 funexp = ((SMALL_REGISTER_CLASSES && reg_parm_seen)
378 ? force_not_mem (memory_address (FUNCTION_MODE, funexp))
379 : memory_address (FUNCTION_MODE, funexp));
51bbfa0c
RS
380 else
381 {
382#ifndef NO_FUNCTION_CSE
383 if (optimize && ! flag_no_function_cse)
384#ifdef NO_RECURSIVE_FUNCTION_CSE
385 if (fndecl != current_function_decl)
386#endif
387 funexp = force_reg (Pmode, funexp);
388#endif
389 }
390
391 if (static_chain_value != 0)
392 {
393 emit_move_insn (static_chain_rtx, static_chain_value);
394
f991a240
RK
395 if (GET_CODE (static_chain_rtx) == REG)
396 use_reg (call_fusage, static_chain_rtx);
51bbfa0c
RS
397 }
398
399 return funexp;
400}
401
402/* Generate instructions to call function FUNEXP,
403 and optionally pop the results.
404 The CALL_INSN is the first insn generated.
405
607ea900 406 FNDECL is the declaration node of the function. This is given to the
2c8da025
RK
407 macro RETURN_POPS_ARGS to determine whether this function pops its own args.
408
334c4f0f
RK
409 FUNTYPE is the data type of the function. This is given to the macro
410 RETURN_POPS_ARGS to determine whether this function pops its own args.
411 We used to allow an identifier for library functions, but that doesn't
412 work when the return type is an aggregate type and the calling convention
413 says that the pointer to this aggregate is to be popped by the callee.
51bbfa0c
RS
414
415 STACK_SIZE is the number of bytes of arguments on the stack,
c2732da3
JM
416 ROUNDED_STACK_SIZE is that number rounded up to
417 PREFERRED_STACK_BOUNDARY; zero if the size is variable. This is
418 both to put into the call insn and to generate explicit popping
419 code if necessary.
51bbfa0c
RS
420
421 STRUCT_VALUE_SIZE is the number of bytes wanted in a structure value.
422 It is zero if this call doesn't want a structure value.
423
424 NEXT_ARG_REG is the rtx that results from executing
425 FUNCTION_ARG (args_so_far, VOIDmode, void_type_node, 1)
426 just after all the args have had their registers assigned.
427 This could be whatever you like, but normally it is the first
428 arg-register beyond those used for args in this call,
429 or 0 if all the arg-registers are used in this call.
430 It is passed on to `gen_call' so you can put this info in the call insn.
431
432 VALREG is a hard register in which a value is returned,
433 or 0 if the call does not return a value.
434
435 OLD_INHIBIT_DEFER_POP is the value that `inhibit_defer_pop' had before
436 the args to this call were processed.
437 We restore `inhibit_defer_pop' to that value.
438
94b25f81 439 CALL_FUSAGE is either empty or an EXPR_LIST of USE expressions that
7393c642 440 denote registers used by the called function. */
f725a3ec 441
322e3e34 442static void
fb5eebb9
RH
443emit_call_1 (funexp, fndecl, funtype, stack_size, rounded_stack_size,
444 struct_value_size, next_arg_reg, valreg, old_inhibit_defer_pop,
0a1c58a2 445 call_fusage, ecf_flags)
51bbfa0c 446 rtx funexp;
c84e2712
KG
447 tree fndecl ATTRIBUTE_UNUSED;
448 tree funtype ATTRIBUTE_UNUSED;
6a651371 449 HOST_WIDE_INT stack_size ATTRIBUTE_UNUSED;
fb5eebb9 450 HOST_WIDE_INT rounded_stack_size;
962f1324 451 HOST_WIDE_INT struct_value_size ATTRIBUTE_UNUSED;
51bbfa0c
RS
452 rtx next_arg_reg;
453 rtx valreg;
454 int old_inhibit_defer_pop;
77cac2f2 455 rtx call_fusage;
0a1c58a2 456 int ecf_flags;
51bbfa0c 457{
062e7fd8 458 rtx rounded_stack_size_rtx = GEN_INT (rounded_stack_size);
51bbfa0c
RS
459 rtx call_insn;
460 int already_popped = 0;
fb5eebb9 461 HOST_WIDE_INT n_popped = RETURN_POPS_ARGS (fndecl, funtype, stack_size);
f45c9d95
ZW
462#if defined (HAVE_call) && defined (HAVE_call_value)
463 rtx struct_value_size_rtx;
464 struct_value_size_rtx = GEN_INT (struct_value_size);
465#endif
51bbfa0c
RS
466
467 /* Ensure address is valid. SYMBOL_REF is already valid, so no need,
468 and we don't want to load it into a register as an optimization,
469 because prepare_call_address already did it if it should be done. */
470 if (GET_CODE (funexp) != SYMBOL_REF)
471 funexp = memory_address (FUNCTION_MODE, funexp);
472
0a1c58a2
JL
473#if defined (HAVE_sibcall_pop) && defined (HAVE_sibcall_value_pop)
474 if ((ecf_flags & ECF_SIBCALL)
475 && HAVE_sibcall_pop && HAVE_sibcall_value_pop
f132f529 476 && (n_popped > 0 || stack_size == 0))
0a1c58a2 477 {
f132f529 478 rtx n_pop = GEN_INT (n_popped));
0a1c58a2
JL
479 rtx pat;
480
481 /* If this subroutine pops its own args, record that in the call insn
482 if possible, for the sake of frame pointer elimination. */
483
484 if (valreg)
f45c9d95 485 pat = GEN_SIBCALL_VALUE_POP (valreg,
0a1c58a2
JL
486 gen_rtx_MEM (FUNCTION_MODE, funexp),
487 rounded_stack_size_rtx, next_arg_reg,
488 n_pop);
489 else
f45c9d95 490 pat = GEN_SIBCALL_POP (gen_rtx_MEM (FUNCTION_MODE, funexp),
0a1c58a2
JL
491 rounded_stack_size_rtx, next_arg_reg, n_pop);
492
493 emit_call_insn (pat);
494 already_popped = 1;
495 }
496 else
497#endif
498
51bbfa0c 499#if defined (HAVE_call_pop) && defined (HAVE_call_value_pop)
8bcafee3
JDA
500/* If the target has "call" or "call_value" insns, then prefer them
501 if no arguments are actually popped. If the target does not have
502 "call" or "call_value" insns, then we must use the popping versions
503 even if the call has no arguments to pop. */
504#if defined (HAVE_call) && defined (HAVE_call_value)
505 if (HAVE_call && HAVE_call_value && HAVE_call_pop && HAVE_call_value_pop
7393c642 506 && n_popped > 0 && ! (ecf_flags & ECF_SP_DEPRESSED))
8bcafee3
JDA
507#else
508 if (HAVE_call_pop && HAVE_call_value_pop)
509#endif
51bbfa0c 510 {
fb5eebb9 511 rtx n_pop = GEN_INT (n_popped);
51bbfa0c
RS
512 rtx pat;
513
514 /* If this subroutine pops its own args, record that in the call insn
515 if possible, for the sake of frame pointer elimination. */
2c8da025 516
51bbfa0c 517 if (valreg)
f45c9d95 518 pat = GEN_CALL_VALUE_POP (valreg,
38a448ca 519 gen_rtx_MEM (FUNCTION_MODE, funexp),
062e7fd8 520 rounded_stack_size_rtx, next_arg_reg, n_pop);
51bbfa0c 521 else
f45c9d95 522 pat = GEN_CALL_POP (gen_rtx_MEM (FUNCTION_MODE, funexp),
062e7fd8 523 rounded_stack_size_rtx, next_arg_reg, n_pop);
51bbfa0c
RS
524
525 emit_call_insn (pat);
526 already_popped = 1;
527 }
528 else
529#endif
51bbfa0c 530
0a1c58a2
JL
531#if defined (HAVE_sibcall) && defined (HAVE_sibcall_value)
532 if ((ecf_flags & ECF_SIBCALL)
533 && HAVE_sibcall && HAVE_sibcall_value)
534 {
535 if (valreg)
f45c9d95 536 emit_call_insn (GEN_SIBCALL_VALUE (valreg,
0a1c58a2
JL
537 gen_rtx_MEM (FUNCTION_MODE, funexp),
538 rounded_stack_size_rtx,
539 next_arg_reg, NULL_RTX));
540 else
f45c9d95 541 emit_call_insn (GEN_SIBCALL (gen_rtx_MEM (FUNCTION_MODE, funexp),
0a1c58a2
JL
542 rounded_stack_size_rtx, next_arg_reg,
543 struct_value_size_rtx));
544 }
545 else
546#endif
547
51bbfa0c
RS
548#if defined (HAVE_call) && defined (HAVE_call_value)
549 if (HAVE_call && HAVE_call_value)
550 {
551 if (valreg)
f45c9d95 552 emit_call_insn (GEN_CALL_VALUE (valreg,
38a448ca 553 gen_rtx_MEM (FUNCTION_MODE, funexp),
062e7fd8 554 rounded_stack_size_rtx, next_arg_reg,
e992302c 555 NULL_RTX));
51bbfa0c 556 else
f45c9d95 557 emit_call_insn (GEN_CALL (gen_rtx_MEM (FUNCTION_MODE, funexp),
062e7fd8 558 rounded_stack_size_rtx, next_arg_reg,
51bbfa0c
RS
559 struct_value_size_rtx));
560 }
561 else
562#endif
563 abort ();
564
77cac2f2 565 /* Find the CALL insn we just emitted. */
51bbfa0c
RS
566 for (call_insn = get_last_insn ();
567 call_insn && GET_CODE (call_insn) != CALL_INSN;
568 call_insn = PREV_INSN (call_insn))
569 ;
570
571 if (! call_insn)
572 abort ();
573
2a8f6b90
JH
574 /* Mark memory as used for "pure" function call. */
575 if (ecf_flags & ECF_PURE)
576 {
577 call_fusage = gen_rtx_EXPR_LIST (VOIDmode,
578 gen_rtx_USE (VOIDmode,
579 gen_rtx_MEM (BLKmode,
580 gen_rtx_SCRATCH (VOIDmode))), call_fusage);
581 }
582
e59e60a7
RK
583 /* Put the register usage information on the CALL. If there is already
584 some usage information, put ours at the end. */
585 if (CALL_INSN_FUNCTION_USAGE (call_insn))
586 {
587 rtx link;
588
589 for (link = CALL_INSN_FUNCTION_USAGE (call_insn); XEXP (link, 1) != 0;
590 link = XEXP (link, 1))
591 ;
592
593 XEXP (link, 1) = call_fusage;
594 }
595 else
596 CALL_INSN_FUNCTION_USAGE (call_insn) = call_fusage;
51bbfa0c
RS
597
598 /* If this is a const call, then set the insn's unchanging bit. */
2a8f6b90 599 if (ecf_flags & (ECF_CONST | ECF_PURE))
51bbfa0c
RS
600 CONST_CALL_P (call_insn) = 1;
601
12a22e76
JM
602 /* If this call can't throw, attach a REG_EH_REGION reg note to that
603 effect. */
0a1c58a2 604 if (ecf_flags & ECF_NOTHROW)
54cea123 605 REG_NOTES (call_insn) = gen_rtx_EXPR_LIST (REG_EH_REGION, const0_rtx,
12a22e76
JM
606 REG_NOTES (call_insn));
607
ca3920ad
JW
608 if (ecf_flags & ECF_NORETURN)
609 REG_NOTES (call_insn) = gen_rtx_EXPR_LIST (REG_NORETURN, const0_rtx,
610 REG_NOTES (call_insn));
611
0a1c58a2
JL
612 SIBLING_CALL_P (call_insn) = ((ecf_flags & ECF_SIBCALL) != 0);
613
b1e64e0d
RS
614 /* Restore this now, so that we do defer pops for this call's args
615 if the context of the call as a whole permits. */
616 inhibit_defer_pop = old_inhibit_defer_pop;
617
fb5eebb9 618 if (n_popped > 0)
51bbfa0c
RS
619 {
620 if (!already_popped)
e3da301d 621 CALL_INSN_FUNCTION_USAGE (call_insn)
38a448ca
RH
622 = gen_rtx_EXPR_LIST (VOIDmode,
623 gen_rtx_CLOBBER (VOIDmode, stack_pointer_rtx),
624 CALL_INSN_FUNCTION_USAGE (call_insn));
fb5eebb9 625 rounded_stack_size -= n_popped;
062e7fd8 626 rounded_stack_size_rtx = GEN_INT (rounded_stack_size);
1503a7ec 627 stack_pointer_delta -= n_popped;
51bbfa0c
RS
628 }
629
f73ad30e 630 if (!ACCUMULATE_OUTGOING_ARGS)
51bbfa0c 631 {
f73ad30e
JH
632 /* If returning from the subroutine does not automatically pop the args,
633 we need an instruction to pop them sooner or later.
634 Perhaps do it now; perhaps just record how much space to pop later.
635
636 If returning from the subroutine does pop the args, indicate that the
637 stack pointer will be changed. */
638
7393c642 639 if (rounded_stack_size != 0 && ! (ecf_flags & ECF_SP_DEPRESSED))
f73ad30e
JH
640 {
641 if (flag_defer_pop && inhibit_defer_pop == 0
7393c642 642 && ! (ecf_flags & (ECF_CONST | ECF_PURE)))
f73ad30e
JH
643 pending_stack_adjust += rounded_stack_size;
644 else
645 adjust_stack (rounded_stack_size_rtx);
646 }
51bbfa0c 647 }
f73ad30e
JH
648 /* When we accumulate outgoing args, we must avoid any stack manipulations.
649 Restore the stack pointer to its original value now. Usually
650 ACCUMULATE_OUTGOING_ARGS targets don't get here, but there are exceptions.
651 On i386 ACCUMULATE_OUTGOING_ARGS can be enabled on demand, and
652 popping variants of functions exist as well.
653
654 ??? We may optimize similar to defer_pop above, but it is
655 probably not worthwhile.
f725a3ec 656
f73ad30e
JH
657 ??? It will be worthwhile to enable combine_stack_adjustments even for
658 such machines. */
659 else if (n_popped)
660 anti_adjust_stack (GEN_INT (n_popped));
51bbfa0c
RS
661}
662
20efdf74
JL
663/* Determine if the function identified by NAME and FNDECL is one with
664 special properties we wish to know about.
665
666 For example, if the function might return more than one time (setjmp), then
667 set RETURNS_TWICE to a nonzero value.
668
f2d33f13 669 Similarly set LONGJMP for if the function is in the longjmp family.
20efdf74 670
f2d33f13 671 Set MALLOC for any of the standard memory allocation functions which
20efdf74
JL
672 allocate from the heap.
673
674 Set MAY_BE_ALLOCA for any memory allocation function that might allocate
675 space from the stack such as alloca. */
676
f2d33f13
JH
677static int
678special_function_p (fndecl, flags)
20efdf74 679 tree fndecl;
f2d33f13 680 int flags;
20efdf74 681{
f2d33f13 682 if (! (flags & ECF_MALLOC)
3a8c995b 683 && fndecl && DECL_NAME (fndecl)
140592a0 684 && IDENTIFIER_LENGTH (DECL_NAME (fndecl)) <= 17
20efdf74
JL
685 /* Exclude functions not at the file scope, or not `extern',
686 since they are not the magic functions we would otherwise
687 think they are. */
688 && DECL_CONTEXT (fndecl) == NULL_TREE && TREE_PUBLIC (fndecl))
689 {
63ad61ed
ZW
690 const char *name = IDENTIFIER_POINTER (DECL_NAME (fndecl));
691 const char *tname = name;
20efdf74 692
ca54603f
JL
693 /* We assume that alloca will always be called by name. It
694 makes no sense to pass it as a pointer-to-function to
695 anything that does not understand its behavior. */
f2d33f13
JH
696 if (((IDENTIFIER_LENGTH (DECL_NAME (fndecl)) == 6
697 && name[0] == 'a'
698 && ! strcmp (name, "alloca"))
699 || (IDENTIFIER_LENGTH (DECL_NAME (fndecl)) == 16
700 && name[0] == '_'
701 && ! strcmp (name, "__builtin_alloca"))))
702 flags |= ECF_MAY_BE_ALLOCA;
ca54603f 703
20efdf74
JL
704 /* Disregard prefix _, __ or __x. */
705 if (name[0] == '_')
706 {
707 if (name[1] == '_' && name[2] == 'x')
708 tname += 3;
709 else if (name[1] == '_')
710 tname += 2;
711 else
712 tname += 1;
713 }
714
715 if (tname[0] == 's')
716 {
f2d33f13
JH
717 if ((tname[1] == 'e'
718 && (! strcmp (tname, "setjmp")
719 || ! strcmp (tname, "setjmp_syscall")))
720 || (tname[1] == 'i'
721 && ! strcmp (tname, "sigsetjmp"))
722 || (tname[1] == 'a'
723 && ! strcmp (tname, "savectx")))
724 flags |= ECF_RETURNS_TWICE;
725
20efdf74
JL
726 if (tname[1] == 'i'
727 && ! strcmp (tname, "siglongjmp"))
f2d33f13 728 flags |= ECF_LONGJMP;
20efdf74
JL
729 }
730 else if ((tname[0] == 'q' && tname[1] == 's'
731 && ! strcmp (tname, "qsetjmp"))
732 || (tname[0] == 'v' && tname[1] == 'f'
733 && ! strcmp (tname, "vfork")))
f2d33f13 734 flags |= ECF_RETURNS_TWICE;
20efdf74
JL
735
736 else if (tname[0] == 'l' && tname[1] == 'o'
737 && ! strcmp (tname, "longjmp"))
f2d33f13 738 flags |= ECF_LONGJMP;
fa76d9e0
JR
739
740 else if ((tname[0] == 'f' && tname[1] == 'o'
741 && ! strcmp (tname, "fork"))
742 /* Linux specific: __clone. check NAME to insist on the
743 leading underscores, to avoid polluting the ISO / POSIX
744 namespace. */
745 || (name[0] == '_' && name[1] == '_'
746 && ! strcmp (tname, "clone"))
747 || (tname[0] == 'e' && tname[1] == 'x' && tname[2] == 'e'
748 && tname[3] == 'c' && (tname[4] == 'l' || tname[4] == 'v')
749 && (tname[5] == '\0'
750 || ((tname[5] == 'p' || tname[5] == 'e')
751 && tname[6] == '\0'))))
f2d33f13 752 flags |= ECF_FORK_OR_EXEC;
fa76d9e0 753
140592a0 754 /* Do not add any more malloc-like functions to this list,
82514696
KG
755 instead mark them as malloc functions using the malloc attribute.
756 Note, realloc is not suitable for attribute malloc since
1e5a1107
JM
757 it may return the same address across multiple calls.
758 C++ operator new is not suitable because it is not required
759 to return a unique pointer; indeed, the standard placement new
f725a3ec 760 just returns its argument. */
91d024d5
ML
761 else if (TYPE_MODE (TREE_TYPE (TREE_TYPE (fndecl))) == Pmode
762 && (! strcmp (tname, "malloc")
763 || ! strcmp (tname, "calloc")
764 || ! strcmp (tname, "strdup")))
f2d33f13 765 flags |= ECF_MALLOC;
20efdf74 766 }
f2d33f13 767 return flags;
20efdf74
JL
768}
769
f2d33f13 770/* Return nonzero when tree represent call to longjmp. */
7393c642 771
f2d33f13
JH
772int
773setjmp_call_p (fndecl)
774 tree fndecl;
775{
776 return special_function_p (fndecl, 0) & ECF_RETURNS_TWICE;
777}
778
779/* Detect flags (function attributes) from the function type node. */
7393c642 780
f2d33f13
JH
781static int
782flags_from_decl_or_type (exp)
783 tree exp;
784{
785 int flags = 0;
7393c642 786
f2d33f13
JH
787 /* ??? We can't set IS_MALLOC for function types? */
788 if (DECL_P (exp))
789 {
790 /* The function exp may have the `malloc' attribute. */
791 if (DECL_P (exp) && DECL_IS_MALLOC (exp))
792 flags |= ECF_MALLOC;
793
2a8f6b90
JH
794 /* The function exp may have the `pure' attribute. */
795 if (DECL_P (exp) && DECL_IS_PURE (exp))
796 flags |= ECF_PURE;
797
f2d33f13
JH
798 if (TREE_NOTHROW (exp))
799 flags |= ECF_NOTHROW;
800 }
801
7393c642 802 if (TREE_READONLY (exp) && ! TREE_THIS_VOLATILE (exp))
f2d33f13
JH
803 flags |= ECF_CONST;
804
805 if (TREE_THIS_VOLATILE (exp))
806 flags |= ECF_NORETURN;
807
808 return flags;
809}
810
20efdf74
JL
811/* Precompute all register parameters as described by ARGS, storing values
812 into fields within the ARGS array.
813
814 NUM_ACTUALS indicates the total number elements in the ARGS array.
815
816 Set REG_PARM_SEEN if we encounter a register parameter. */
817
818static void
819precompute_register_parameters (num_actuals, args, reg_parm_seen)
820 int num_actuals;
821 struct arg_data *args;
822 int *reg_parm_seen;
823{
824 int i;
825
826 *reg_parm_seen = 0;
827
828 for (i = 0; i < num_actuals; i++)
829 if (args[i].reg != 0 && ! args[i].pass_on_stack)
830 {
831 *reg_parm_seen = 1;
832
833 if (args[i].value == 0)
834 {
835 push_temp_slots ();
836 args[i].value = expand_expr (args[i].tree_value, NULL_RTX,
837 VOIDmode, 0);
838 preserve_temp_slots (args[i].value);
839 pop_temp_slots ();
840
841 /* ANSI doesn't require a sequence point here,
842 but PCC has one, so this will avoid some problems. */
843 emit_queue ();
844 }
845
846 /* If we are to promote the function arg to a wider mode,
847 do it now. */
848
849 if (args[i].mode != TYPE_MODE (TREE_TYPE (args[i].tree_value)))
850 args[i].value
851 = convert_modes (args[i].mode,
852 TYPE_MODE (TREE_TYPE (args[i].tree_value)),
853 args[i].value, args[i].unsignedp);
854
f725a3ec 855 /* If the value is expensive, and we are inside an appropriately
20efdf74
JL
856 short loop, put the value into a pseudo and then put the pseudo
857 into the hard reg.
858
859 For small register classes, also do this if this call uses
860 register parameters. This is to avoid reload conflicts while
861 loading the parameters registers. */
862
863 if ((! (GET_CODE (args[i].value) == REG
864 || (GET_CODE (args[i].value) == SUBREG
865 && GET_CODE (SUBREG_REG (args[i].value)) == REG)))
866 && args[i].mode != BLKmode
b437f1a7 867 && rtx_cost (args[i].value, SET) > COSTS_N_INSNS (1)
20efdf74
JL
868 && ((SMALL_REGISTER_CLASSES && *reg_parm_seen)
869 || preserve_subexpressions_p ()))
870 args[i].value = copy_to_mode_reg (args[i].mode, args[i].value);
871 }
872}
873
f73ad30e 874#ifdef REG_PARM_STACK_SPACE
20efdf74
JL
875
876 /* The argument list is the property of the called routine and it
877 may clobber it. If the fixed area has been used for previous
878 parameters, we must save and restore it. */
3bdf5ad1 879
20efdf74
JL
880static rtx
881save_fixed_argument_area (reg_parm_stack_space, argblock,
882 low_to_save, high_to_save)
883 int reg_parm_stack_space;
884 rtx argblock;
885 int *low_to_save;
886 int *high_to_save;
887{
888 int i;
889 rtx save_area = NULL_RTX;
890
891 /* Compute the boundary of the that needs to be saved, if any. */
892#ifdef ARGS_GROW_DOWNWARD
893 for (i = 0; i < reg_parm_stack_space + 1; i++)
894#else
895 for (i = 0; i < reg_parm_stack_space; i++)
896#endif
897 {
898 if (i >= highest_outgoing_arg_in_use
899 || stack_usage_map[i] == 0)
900 continue;
901
902 if (*low_to_save == -1)
903 *low_to_save = i;
904
905 *high_to_save = i;
906 }
907
908 if (*low_to_save >= 0)
909 {
910 int num_to_save = *high_to_save - *low_to_save + 1;
911 enum machine_mode save_mode
912 = mode_for_size (num_to_save * BITS_PER_UNIT, MODE_INT, 1);
913 rtx stack_area;
914
915 /* If we don't have the required alignment, must do this in BLKmode. */
916 if ((*low_to_save & (MIN (GET_MODE_SIZE (save_mode),
f725a3ec 917 BIGGEST_ALIGNMENT / UNITS_PER_WORD) - 1)))
20efdf74
JL
918 save_mode = BLKmode;
919
920#ifdef ARGS_GROW_DOWNWARD
3bdf5ad1
RK
921 stack_area
922 = gen_rtx_MEM (save_mode,
923 memory_address (save_mode,
924 plus_constant (argblock,
925 - *high_to_save)));
20efdf74
JL
926#else
927 stack_area = gen_rtx_MEM (save_mode,
928 memory_address (save_mode,
929 plus_constant (argblock,
930 *low_to_save)));
931#endif
932 if (save_mode == BLKmode)
933 {
934 save_area = assign_stack_temp (BLKmode, num_to_save, 0);
19caa751
RK
935 /* Cannot use emit_block_move here because it can be done by a
936 library call which in turn gets into this place again and deadly
937 infinite recursion happens. */
04572513 938 move_by_pieces (validize_mem (save_area), stack_area, num_to_save,
19caa751 939 PARM_BOUNDARY);
20efdf74
JL
940 }
941 else
942 {
943 save_area = gen_reg_rtx (save_mode);
944 emit_move_insn (save_area, stack_area);
945 }
946 }
947 return save_area;
948}
949
950static void
951restore_fixed_argument_area (save_area, argblock, high_to_save, low_to_save)
952 rtx save_area;
953 rtx argblock;
954 int high_to_save;
955 int low_to_save;
956{
957 enum machine_mode save_mode = GET_MODE (save_area);
958#ifdef ARGS_GROW_DOWNWARD
959 rtx stack_area
960 = gen_rtx_MEM (save_mode,
961 memory_address (save_mode,
962 plus_constant (argblock,
963 - high_to_save)));
964#else
965 rtx stack_area
966 = gen_rtx_MEM (save_mode,
967 memory_address (save_mode,
968 plus_constant (argblock,
969 low_to_save)));
970#endif
971
972 if (save_mode != BLKmode)
973 emit_move_insn (stack_area, save_area);
974 else
04572513
JJ
975 /* Cannot use emit_block_move here because it can be done by a library
976 call which in turn gets into this place again and deadly infinite
977 recursion happens. */
978 move_by_pieces (stack_area, validize_mem (save_area),
19caa751 979 high_to_save - low_to_save + 1, PARM_BOUNDARY);
20efdf74
JL
980}
981#endif
f725a3ec 982
20efdf74
JL
983/* If any elements in ARGS refer to parameters that are to be passed in
984 registers, but not in memory, and whose alignment does not permit a
985 direct copy into registers. Copy the values into a group of pseudos
f725a3ec 986 which we will later copy into the appropriate hard registers.
8e6a59fe
MM
987
988 Pseudos for each unaligned argument will be stored into the array
989 args[argnum].aligned_regs. The caller is responsible for deallocating
990 the aligned_regs array if it is nonzero. */
991
20efdf74
JL
992static void
993store_unaligned_arguments_into_pseudos (args, num_actuals)
994 struct arg_data *args;
995 int num_actuals;
996{
997 int i, j;
f725a3ec 998
20efdf74
JL
999 for (i = 0; i < num_actuals; i++)
1000 if (args[i].reg != 0 && ! args[i].pass_on_stack
1001 && args[i].mode == BLKmode
1002 && (TYPE_ALIGN (TREE_TYPE (args[i].tree_value))
1003 < (unsigned int) MIN (BIGGEST_ALIGNMENT, BITS_PER_WORD)))
1004 {
1005 int bytes = int_size_in_bytes (TREE_TYPE (args[i].tree_value));
1006 int big_endian_correction = 0;
1007
1008 args[i].n_aligned_regs
1009 = args[i].partial ? args[i].partial
1010 : (bytes + (UNITS_PER_WORD - 1)) / UNITS_PER_WORD;
1011
8e6a59fe
MM
1012 args[i].aligned_regs = (rtx *) xmalloc (sizeof (rtx)
1013 * args[i].n_aligned_regs);
20efdf74
JL
1014
1015 /* Structures smaller than a word are aligned to the least
1016 significant byte (to the right). On a BYTES_BIG_ENDIAN machine,
1017 this means we must skip the empty high order bytes when
1018 calculating the bit offset. */
1019 if (BYTES_BIG_ENDIAN && bytes < UNITS_PER_WORD)
1020 big_endian_correction = (BITS_PER_WORD - (bytes * BITS_PER_UNIT));
1021
1022 for (j = 0; j < args[i].n_aligned_regs; j++)
1023 {
1024 rtx reg = gen_reg_rtx (word_mode);
1025 rtx word = operand_subword_force (args[i].value, j, BLKmode);
1026 int bitsize = MIN (bytes * BITS_PER_UNIT, BITS_PER_WORD);
1027 int bitalign = TYPE_ALIGN (TREE_TYPE (args[i].tree_value));
1028
1029 args[i].aligned_regs[j] = reg;
1030
1031 /* There is no need to restrict this code to loading items
1032 in TYPE_ALIGN sized hunks. The bitfield instructions can
1033 load up entire word sized registers efficiently.
1034
1035 ??? This may not be needed anymore.
1036 We use to emit a clobber here but that doesn't let later
1037 passes optimize the instructions we emit. By storing 0 into
1038 the register later passes know the first AND to zero out the
1039 bitfield being set in the register is unnecessary. The store
1040 of 0 will be deleted as will at least the first AND. */
1041
1042 emit_move_insn (reg, const0_rtx);
1043
1044 bytes -= bitsize / BITS_PER_UNIT;
1045 store_bit_field (reg, bitsize, big_endian_correction, word_mode,
19caa751
RK
1046 extract_bit_field (word, bitsize, 0, 1, NULL_RTX,
1047 word_mode, word_mode, bitalign,
20efdf74 1048 BITS_PER_WORD),
19caa751 1049 bitalign, BITS_PER_WORD);
20efdf74
JL
1050 }
1051 }
1052}
1053
d7cdf113 1054/* Fill in ARGS_SIZE and ARGS array based on the parameters found in
f725a3ec 1055 ACTPARMS.
d7cdf113
JL
1056
1057 NUM_ACTUALS is the total number of parameters.
1058
1059 N_NAMED_ARGS is the total number of named arguments.
1060
1061 FNDECL is the tree code for the target of this call (if known)
1062
1063 ARGS_SO_FAR holds state needed by the target to know where to place
1064 the next argument.
1065
1066 REG_PARM_STACK_SPACE is the number of bytes of stack space reserved
1067 for arguments which are passed in registers.
1068
1069 OLD_STACK_LEVEL is a pointer to an rtx which olds the old stack level
1070 and may be modified by this routine.
1071
f2d33f13 1072 OLD_PENDING_ADJ, MUST_PREALLOCATE and FLAGS are pointers to integer
d7cdf113
JL
1073 flags which may may be modified by this routine. */
1074
1075static void
1076initialize_argument_information (num_actuals, args, args_size, n_named_args,
1077 actparms, fndecl, args_so_far,
1078 reg_parm_stack_space, old_stack_level,
f2d33f13 1079 old_pending_adj, must_preallocate,
7d167afd 1080 ecf_flags)
91813b28 1081 int num_actuals ATTRIBUTE_UNUSED;
d7cdf113
JL
1082 struct arg_data *args;
1083 struct args_size *args_size;
91813b28 1084 int n_named_args ATTRIBUTE_UNUSED;
d7cdf113
JL
1085 tree actparms;
1086 tree fndecl;
959f3a06 1087 CUMULATIVE_ARGS *args_so_far;
d7cdf113
JL
1088 int reg_parm_stack_space;
1089 rtx *old_stack_level;
1090 int *old_pending_adj;
1091 int *must_preallocate;
f2d33f13 1092 int *ecf_flags;
d7cdf113
JL
1093{
1094 /* 1 if scanning parms front to back, -1 if scanning back to front. */
1095 int inc;
1096
1097 /* Count arg position in order args appear. */
1098 int argpos;
1099
4fc026cd 1100 struct args_size alignment_pad;
d7cdf113
JL
1101 int i;
1102 tree p;
f725a3ec 1103
d7cdf113
JL
1104 args_size->constant = 0;
1105 args_size->var = 0;
1106
1107 /* In this loop, we consider args in the order they are written.
1108 We fill up ARGS from the front or from the back if necessary
1109 so that in any case the first arg to be pushed ends up at the front. */
1110
f73ad30e
JH
1111 if (PUSH_ARGS_REVERSED)
1112 {
1113 i = num_actuals - 1, inc = -1;
1114 /* In this case, must reverse order of args
1115 so that we compute and push the last arg first. */
1116 }
1117 else
1118 {
1119 i = 0, inc = 1;
1120 }
d7cdf113
JL
1121
1122 /* I counts args in order (to be) pushed; ARGPOS counts in order written. */
1123 for (p = actparms, argpos = 0; p; p = TREE_CHAIN (p), i += inc, argpos++)
1124 {
1125 tree type = TREE_TYPE (TREE_VALUE (p));
1126 int unsignedp;
1127 enum machine_mode mode;
1128
1129 args[i].tree_value = TREE_VALUE (p);
1130
1131 /* Replace erroneous argument with constant zero. */
d0f062fb 1132 if (type == error_mark_node || !COMPLETE_TYPE_P (type))
d7cdf113
JL
1133 args[i].tree_value = integer_zero_node, type = integer_type_node;
1134
1135 /* If TYPE is a transparent union, pass things the way we would
1136 pass the first field of the union. We have already verified that
1137 the modes are the same. */
2bf105ab 1138 if (TREE_CODE (type) == UNION_TYPE && TYPE_TRANSPARENT_UNION (type))
d7cdf113
JL
1139 type = TREE_TYPE (TYPE_FIELDS (type));
1140
1141 /* Decide where to pass this arg.
1142
1143 args[i].reg is nonzero if all or part is passed in registers.
1144
1145 args[i].partial is nonzero if part but not all is passed in registers,
1146 and the exact value says how many words are passed in registers.
1147
1148 args[i].pass_on_stack is nonzero if the argument must at least be
1149 computed on the stack. It may then be loaded back into registers
1150 if args[i].reg is nonzero.
1151
1152 These decisions are driven by the FUNCTION_... macros and must agree
1153 with those made by function.c. */
1154
1155 /* See if this argument should be passed by invisible reference. */
1156 if ((TREE_CODE (TYPE_SIZE (type)) != INTEGER_CST
1157 && contains_placeholder_p (TYPE_SIZE (type)))
1158 || TREE_ADDRESSABLE (type)
1159#ifdef FUNCTION_ARG_PASS_BY_REFERENCE
959f3a06 1160 || FUNCTION_ARG_PASS_BY_REFERENCE (*args_so_far, TYPE_MODE (type),
d7cdf113
JL
1161 type, argpos < n_named_args)
1162#endif
1163 )
1164 {
1165 /* If we're compiling a thunk, pass through invisible
1166 references instead of making a copy. */
1167 if (current_function_is_thunk
1168#ifdef FUNCTION_ARG_CALLEE_COPIES
959f3a06 1169 || (FUNCTION_ARG_CALLEE_COPIES (*args_so_far, TYPE_MODE (type),
d7cdf113
JL
1170 type, argpos < n_named_args)
1171 /* If it's in a register, we must make a copy of it too. */
1172 /* ??? Is this a sufficient test? Is there a better one? */
1173 && !(TREE_CODE (args[i].tree_value) == VAR_DECL
1174 && REG_P (DECL_RTL (args[i].tree_value)))
1175 && ! TREE_ADDRESSABLE (type))
1176#endif
1177 )
1178 {
1179 /* C++ uses a TARGET_EXPR to indicate that we want to make a
1180 new object from the argument. If we are passing by
1181 invisible reference, the callee will do that for us, so we
1182 can strip off the TARGET_EXPR. This is not always safe,
1183 but it is safe in the only case where this is a useful
1184 optimization; namely, when the argument is a plain object.
1185 In that case, the frontend is just asking the backend to
f725a3ec
KH
1186 make a bitwise copy of the argument. */
1187
d7cdf113 1188 if (TREE_CODE (args[i].tree_value) == TARGET_EXPR
2f939d94 1189 && (DECL_P (TREE_OPERAND (args[i].tree_value, 1)))
d7cdf113
JL
1190 && ! REG_P (DECL_RTL (TREE_OPERAND (args[i].tree_value, 1))))
1191 args[i].tree_value = TREE_OPERAND (args[i].tree_value, 1);
1192
1193 args[i].tree_value = build1 (ADDR_EXPR,
1194 build_pointer_type (type),
1195 args[i].tree_value);
1196 type = build_pointer_type (type);
1197 }
1198 else
1199 {
1200 /* We make a copy of the object and pass the address to the
1201 function being called. */
1202 rtx copy;
1203
d0f062fb 1204 if (!COMPLETE_TYPE_P (type)
d7cdf113
JL
1205 || TREE_CODE (TYPE_SIZE (type)) != INTEGER_CST
1206 || (flag_stack_check && ! STACK_CHECK_BUILTIN
05bccae2
RK
1207 && (0 < compare_tree_int (TYPE_SIZE_UNIT (type),
1208 STACK_CHECK_MAX_VAR_SIZE))))
d7cdf113
JL
1209 {
1210 /* This is a variable-sized object. Make space on the stack
1211 for it. */
1212 rtx size_rtx = expr_size (TREE_VALUE (p));
1213
1214 if (*old_stack_level == 0)
1215 {
1216 emit_stack_save (SAVE_BLOCK, old_stack_level, NULL_RTX);
1217 *old_pending_adj = pending_stack_adjust;
1218 pending_stack_adjust = 0;
1219 }
1220
1221 copy = gen_rtx_MEM (BLKmode,
3bdf5ad1
RK
1222 allocate_dynamic_stack_space
1223 (size_rtx, NULL_RTX, TYPE_ALIGN (type)));
1224 set_mem_attributes (copy, type, 1);
d7cdf113
JL
1225 }
1226 else
3bdf5ad1 1227 copy = assign_temp (type, 0, 1, 0);
d7cdf113
JL
1228
1229 store_expr (args[i].tree_value, copy, 0);
2a8f6b90 1230 *ecf_flags &= ~(ECF_CONST | ECF_PURE);
d7cdf113
JL
1231
1232 args[i].tree_value = build1 (ADDR_EXPR,
1233 build_pointer_type (type),
1234 make_tree (type, copy));
1235 type = build_pointer_type (type);
1236 }
1237 }
1238
1239 mode = TYPE_MODE (type);
1240 unsignedp = TREE_UNSIGNED (type);
1241
1242#ifdef PROMOTE_FUNCTION_ARGS
1243 mode = promote_mode (type, mode, &unsignedp, 1);
1244#endif
1245
1246 args[i].unsignedp = unsignedp;
1247 args[i].mode = mode;
7d167afd 1248
099e9712
JH
1249 args[i].reg = FUNCTION_ARG (*args_so_far, mode, type,
1250 argpos < n_named_args);
7d167afd
JJ
1251#ifdef FUNCTION_INCOMING_ARG
1252 /* If this is a sibling call and the machine has register windows, the
1253 register window has to be unwinded before calling the routine, so
1254 arguments have to go into the incoming registers. */
099e9712 1255 args[i].tail_call_reg = FUNCTION_INCOMING_ARG (*args_so_far, mode, type,
f725a3ec 1256 argpos < n_named_args);
099e9712
JH
1257#else
1258 args[i].tail_call_reg = args[i].reg;
7d167afd 1259#endif
7d167afd 1260
d7cdf113
JL
1261#ifdef FUNCTION_ARG_PARTIAL_NREGS
1262 if (args[i].reg)
1263 args[i].partial
959f3a06 1264 = FUNCTION_ARG_PARTIAL_NREGS (*args_so_far, mode, type,
d7cdf113
JL
1265 argpos < n_named_args);
1266#endif
1267
1268 args[i].pass_on_stack = MUST_PASS_IN_STACK (mode, type);
1269
1270 /* If FUNCTION_ARG returned a (parallel [(expr_list (nil) ...) ...]),
1271 it means that we are to pass this arg in the register(s) designated
1272 by the PARALLEL, but also to pass it in the stack. */
1273 if (args[i].reg && GET_CODE (args[i].reg) == PARALLEL
1274 && XEXP (XVECEXP (args[i].reg, 0, 0), 0) == 0)
1275 args[i].pass_on_stack = 1;
1276
1277 /* If this is an addressable type, we must preallocate the stack
1278 since we must evaluate the object into its final location.
1279
1280 If this is to be passed in both registers and the stack, it is simpler
1281 to preallocate. */
1282 if (TREE_ADDRESSABLE (type)
1283 || (args[i].pass_on_stack && args[i].reg != 0))
1284 *must_preallocate = 1;
1285
1286 /* If this is an addressable type, we cannot pre-evaluate it. Thus,
1287 we cannot consider this function call constant. */
1288 if (TREE_ADDRESSABLE (type))
2a8f6b90 1289 *ecf_flags &= ~(ECF_CONST | ECF_PURE);
d7cdf113
JL
1290
1291 /* Compute the stack-size of this argument. */
1292 if (args[i].reg == 0 || args[i].partial != 0
1293 || reg_parm_stack_space > 0
1294 || args[i].pass_on_stack)
1295 locate_and_pad_parm (mode, type,
1296#ifdef STACK_PARMS_IN_REG_PARM_AREA
1297 1,
1298#else
1299 args[i].reg != 0,
1300#endif
1301 fndecl, args_size, &args[i].offset,
4fc026cd 1302 &args[i].size, &alignment_pad);
d7cdf113
JL
1303
1304#ifndef ARGS_GROW_DOWNWARD
1305 args[i].slot_offset = *args_size;
1306#endif
1307
4fc026cd
CM
1308 args[i].alignment_pad = alignment_pad;
1309
d7cdf113
JL
1310 /* If a part of the arg was put into registers,
1311 don't include that part in the amount pushed. */
1312 if (reg_parm_stack_space == 0 && ! args[i].pass_on_stack)
1313 args[i].size.constant -= ((args[i].partial * UNITS_PER_WORD)
1314 / (PARM_BOUNDARY / BITS_PER_UNIT)
1315 * (PARM_BOUNDARY / BITS_PER_UNIT));
f725a3ec 1316
d7cdf113
JL
1317 /* Update ARGS_SIZE, the total stack space for args so far. */
1318
1319 args_size->constant += args[i].size.constant;
1320 if (args[i].size.var)
1321 {
1322 ADD_PARM_SIZE (*args_size, args[i].size.var);
1323 }
1324
1325 /* Since the slot offset points to the bottom of the slot,
1326 we must record it after incrementing if the args grow down. */
1327#ifdef ARGS_GROW_DOWNWARD
1328 args[i].slot_offset = *args_size;
1329
1330 args[i].slot_offset.constant = -args_size->constant;
1331 if (args_size->var)
fed3cef0 1332 SUB_PARM_SIZE (args[i].slot_offset, args_size->var);
d7cdf113
JL
1333#endif
1334
1335 /* Increment ARGS_SO_FAR, which has info about which arg-registers
1336 have been used, etc. */
1337
959f3a06 1338 FUNCTION_ARG_ADVANCE (*args_so_far, TYPE_MODE (type), type,
d7cdf113
JL
1339 argpos < n_named_args);
1340 }
1341}
1342
599f37b6
JL
1343/* Update ARGS_SIZE to contain the total size for the argument block.
1344 Return the original constant component of the argument block's size.
1345
1346 REG_PARM_STACK_SPACE holds the number of bytes of stack space reserved
1347 for arguments passed in registers. */
1348
1349static int
c2f8b491 1350compute_argument_block_size (reg_parm_stack_space, args_size,
f725a3ec 1351 preferred_stack_boundary)
599f37b6
JL
1352 int reg_parm_stack_space;
1353 struct args_size *args_size;
c2f8b491 1354 int preferred_stack_boundary ATTRIBUTE_UNUSED;
599f37b6
JL
1355{
1356 int unadjusted_args_size = args_size->constant;
1357
f73ad30e
JH
1358 /* For accumulate outgoing args mode we don't need to align, since the frame
1359 will be already aligned. Align to STACK_BOUNDARY in order to prevent
1360 backends from generating missaligned frame sizes. */
1361#ifdef STACK_BOUNDARY
1362 if (ACCUMULATE_OUTGOING_ARGS && preferred_stack_boundary > STACK_BOUNDARY)
1363 preferred_stack_boundary = STACK_BOUNDARY;
1364#endif
1365
599f37b6
JL
1366 /* Compute the actual size of the argument block required. The variable
1367 and constant sizes must be combined, the size may have to be rounded,
1368 and there may be a minimum required size. */
1369
1370 if (args_size->var)
1371 {
1372 args_size->var = ARGS_SIZE_TREE (*args_size);
1373 args_size->constant = 0;
1374
1375#ifdef PREFERRED_STACK_BOUNDARY
c2f8b491
JH
1376 preferred_stack_boundary /= BITS_PER_UNIT;
1377 if (preferred_stack_boundary > 1)
1503a7ec
JH
1378 {
1379 /* We don't handle this case yet. To handle it correctly we have
f725a3ec 1380 to add the delta, round and substract the delta.
1503a7ec
JH
1381 Currently no machine description requires this support. */
1382 if (stack_pointer_delta & (preferred_stack_boundary - 1))
f725a3ec 1383 abort ();
1503a7ec
JH
1384 args_size->var = round_up (args_size->var, preferred_stack_boundary);
1385 }
599f37b6
JL
1386#endif
1387
1388 if (reg_parm_stack_space > 0)
1389 {
1390 args_size->var
1391 = size_binop (MAX_EXPR, args_size->var,
fed3cef0 1392 ssize_int (reg_parm_stack_space));
599f37b6
JL
1393
1394#ifndef OUTGOING_REG_PARM_STACK_SPACE
1395 /* The area corresponding to register parameters is not to count in
1396 the size of the block we need. So make the adjustment. */
1397 args_size->var
1398 = size_binop (MINUS_EXPR, args_size->var,
fed3cef0 1399 ssize_int (reg_parm_stack_space));
599f37b6
JL
1400#endif
1401 }
1402 }
1403 else
1404 {
1405#ifdef PREFERRED_STACK_BOUNDARY
c2f8b491 1406 preferred_stack_boundary /= BITS_PER_UNIT;
0a1c58a2
JL
1407 if (preferred_stack_boundary < 1)
1408 preferred_stack_boundary = 1;
fb5eebb9 1409 args_size->constant = (((args_size->constant
1503a7ec 1410 + stack_pointer_delta
c2f8b491
JH
1411 + preferred_stack_boundary - 1)
1412 / preferred_stack_boundary
1413 * preferred_stack_boundary)
1503a7ec 1414 - stack_pointer_delta);
599f37b6
JL
1415#endif
1416
1417 args_size->constant = MAX (args_size->constant,
1418 reg_parm_stack_space);
1419
1420#ifdef MAYBE_REG_PARM_STACK_SPACE
1421 if (reg_parm_stack_space == 0)
1422 args_size->constant = 0;
1423#endif
1424
1425#ifndef OUTGOING_REG_PARM_STACK_SPACE
1426 args_size->constant -= reg_parm_stack_space;
1427#endif
1428 }
1429 return unadjusted_args_size;
1430}
1431
19832c77 1432/* Precompute parameters as needed for a function call.
cc0b1adc 1433
f2d33f13 1434 FLAGS is mask of ECF_* constants.
cc0b1adc 1435
cc0b1adc
JL
1436 NUM_ACTUALS is the number of arguments.
1437
f725a3ec
KH
1438 ARGS is an array containing information for each argument; this
1439 routine fills in the INITIAL_VALUE and VALUE fields for each
1440 precomputed argument. */
cc0b1adc
JL
1441
1442static void
40d6e956 1443precompute_arguments (flags, num_actuals, args)
f2d33f13 1444 int flags;
cc0b1adc
JL
1445 int num_actuals;
1446 struct arg_data *args;
cc0b1adc
JL
1447{
1448 int i;
1449
1450 /* If this function call is cse'able, precompute all the parameters.
1451 Note that if the parameter is constructed into a temporary, this will
1452 cause an additional copy because the parameter will be constructed
1453 into a temporary location and then copied into the outgoing arguments.
1454 If a parameter contains a call to alloca and this function uses the
1455 stack, precompute the parameter. */
1456
1457 /* If we preallocated the stack space, and some arguments must be passed
1458 on the stack, then we must precompute any parameter which contains a
1459 function call which will store arguments on the stack.
1460 Otherwise, evaluating the parameter may clobber previous parameters
40d6e956
JH
1461 which have already been stored into the stack. (we have code to avoid
1462 such case by saving the ougoing stack arguments, but it results in
1463 worse code) */
cc0b1adc
JL
1464
1465 for (i = 0; i < num_actuals; i++)
2a8f6b90 1466 if ((flags & (ECF_CONST | ECF_PURE))
40d6e956 1467 || calls_function (args[i].tree_value, !ACCUMULATE_OUTGOING_ARGS))
cc0b1adc
JL
1468 {
1469 /* If this is an addressable type, we cannot pre-evaluate it. */
1470 if (TREE_ADDRESSABLE (TREE_TYPE (args[i].tree_value)))
1471 abort ();
1472
1473 push_temp_slots ();
1474
47841d1b 1475 args[i].value
cc0b1adc
JL
1476 = expand_expr (args[i].tree_value, NULL_RTX, VOIDmode, 0);
1477
1478 preserve_temp_slots (args[i].value);
1479 pop_temp_slots ();
1480
1481 /* ANSI doesn't require a sequence point here,
1482 but PCC has one, so this will avoid some problems. */
1483 emit_queue ();
1484
1485 args[i].initial_value = args[i].value
47841d1b 1486 = protect_from_queue (args[i].value, 0);
cc0b1adc
JL
1487
1488 if (TYPE_MODE (TREE_TYPE (args[i].tree_value)) != args[i].mode)
47841d1b
JJ
1489 {
1490 args[i].value
f725a3ec 1491 = convert_modes (args[i].mode,
47841d1b
JJ
1492 TYPE_MODE (TREE_TYPE (args[i].tree_value)),
1493 args[i].value, args[i].unsignedp);
1494#ifdef PROMOTE_FOR_CALL_ONLY
1495 /* CSE will replace this only if it contains args[i].value
1496 pseudo, so convert it down to the declared mode using
1497 a SUBREG. */
1498 if (GET_CODE (args[i].value) == REG
1499 && GET_MODE_CLASS (args[i].mode) == MODE_INT)
1500 {
1501 args[i].initial_value
1502 = gen_rtx_SUBREG (TYPE_MODE (TREE_TYPE (args[i].tree_value)),
1503 args[i].value, 0);
1504 SUBREG_PROMOTED_VAR_P (args[i].initial_value) = 1;
1505 SUBREG_PROMOTED_UNSIGNED_P (args[i].initial_value)
1506 = args[i].unsignedp;
1507 }
1508#endif
1509 }
cc0b1adc
JL
1510 }
1511}
1512
0f9b3ea6
JL
1513/* Given the current state of MUST_PREALLOCATE and information about
1514 arguments to a function call in NUM_ACTUALS, ARGS and ARGS_SIZE,
1515 compute and return the final value for MUST_PREALLOCATE. */
1516
1517static int
1518finalize_must_preallocate (must_preallocate, num_actuals, args, args_size)
1519 int must_preallocate;
1520 int num_actuals;
1521 struct arg_data *args;
1522 struct args_size *args_size;
1523{
1524 /* See if we have or want to preallocate stack space.
1525
1526 If we would have to push a partially-in-regs parm
1527 before other stack parms, preallocate stack space instead.
1528
1529 If the size of some parm is not a multiple of the required stack
1530 alignment, we must preallocate.
1531
1532 If the total size of arguments that would otherwise create a copy in
1533 a temporary (such as a CALL) is more than half the total argument list
1534 size, preallocation is faster.
1535
1536 Another reason to preallocate is if we have a machine (like the m88k)
1537 where stack alignment is required to be maintained between every
1538 pair of insns, not just when the call is made. However, we assume here
1539 that such machines either do not have push insns (and hence preallocation
1540 would occur anyway) or the problem is taken care of with
1541 PUSH_ROUNDING. */
1542
1543 if (! must_preallocate)
1544 {
1545 int partial_seen = 0;
1546 int copy_to_evaluate_size = 0;
1547 int i;
1548
1549 for (i = 0; i < num_actuals && ! must_preallocate; i++)
1550 {
1551 if (args[i].partial > 0 && ! args[i].pass_on_stack)
1552 partial_seen = 1;
1553 else if (partial_seen && args[i].reg == 0)
1554 must_preallocate = 1;
1555
1556 if (TYPE_MODE (TREE_TYPE (args[i].tree_value)) == BLKmode
1557 && (TREE_CODE (args[i].tree_value) == CALL_EXPR
1558 || TREE_CODE (args[i].tree_value) == TARGET_EXPR
1559 || TREE_CODE (args[i].tree_value) == COND_EXPR
1560 || TREE_ADDRESSABLE (TREE_TYPE (args[i].tree_value))))
1561 copy_to_evaluate_size
1562 += int_size_in_bytes (TREE_TYPE (args[i].tree_value));
1563 }
1564
1565 if (copy_to_evaluate_size * 2 >= args_size->constant
1566 && args_size->constant > 0)
1567 must_preallocate = 1;
1568 }
1569 return must_preallocate;
1570}
599f37b6 1571
a45bdd02
JL
1572/* If we preallocated stack space, compute the address of each argument
1573 and store it into the ARGS array.
1574
f725a3ec 1575 We need not ensure it is a valid memory address here; it will be
a45bdd02
JL
1576 validized when it is used.
1577
1578 ARGBLOCK is an rtx for the address of the outgoing arguments. */
1579
1580static void
1581compute_argument_addresses (args, argblock, num_actuals)
1582 struct arg_data *args;
1583 rtx argblock;
1584 int num_actuals;
1585{
1586 if (argblock)
1587 {
1588 rtx arg_reg = argblock;
1589 int i, arg_offset = 0;
1590
1591 if (GET_CODE (argblock) == PLUS)
1592 arg_reg = XEXP (argblock, 0), arg_offset = INTVAL (XEXP (argblock, 1));
1593
1594 for (i = 0; i < num_actuals; i++)
1595 {
1596 rtx offset = ARGS_SIZE_RTX (args[i].offset);
1597 rtx slot_offset = ARGS_SIZE_RTX (args[i].slot_offset);
1598 rtx addr;
1599
1600 /* Skip this parm if it will not be passed on the stack. */
1601 if (! args[i].pass_on_stack && args[i].reg != 0)
1602 continue;
1603
1604 if (GET_CODE (offset) == CONST_INT)
1605 addr = plus_constant (arg_reg, INTVAL (offset));
1606 else
1607 addr = gen_rtx_PLUS (Pmode, arg_reg, offset);
1608
1609 addr = plus_constant (addr, arg_offset);
1610 args[i].stack = gen_rtx_MEM (args[i].mode, addr);
3bdf5ad1
RK
1611 set_mem_attributes (args[i].stack,
1612 TREE_TYPE (args[i].tree_value), 1);
a45bdd02
JL
1613
1614 if (GET_CODE (slot_offset) == CONST_INT)
1615 addr = plus_constant (arg_reg, INTVAL (slot_offset));
1616 else
1617 addr = gen_rtx_PLUS (Pmode, arg_reg, slot_offset);
1618
1619 addr = plus_constant (addr, arg_offset);
1620 args[i].stack_slot = gen_rtx_MEM (args[i].mode, addr);
3bdf5ad1
RK
1621 set_mem_attributes (args[i].stack_slot,
1622 TREE_TYPE (args[i].tree_value), 1);
7ab923cc
JJ
1623
1624 /* Function incoming arguments may overlap with sibling call
1625 outgoing arguments and we cannot allow reordering of reads
1626 from function arguments with stores to outgoing arguments
1627 of sibling calls. */
1628 MEM_ALIAS_SET (args[i].stack) = 0;
1629 MEM_ALIAS_SET (args[i].stack_slot) = 0;
a45bdd02
JL
1630 }
1631 }
1632}
f725a3ec 1633
a45bdd02
JL
1634/* Given a FNDECL and EXP, return an rtx suitable for use as a target address
1635 in a call instruction.
1636
1637 FNDECL is the tree node for the target function. For an indirect call
1638 FNDECL will be NULL_TREE.
1639
1640 EXP is the CALL_EXPR for this call. */
1641
1642static rtx
1643rtx_for_function_call (fndecl, exp)
1644 tree fndecl;
1645 tree exp;
1646{
1647 rtx funexp;
1648
1649 /* Get the function to call, in the form of RTL. */
1650 if (fndecl)
1651 {
1652 /* If this is the first use of the function, see if we need to
1653 make an external definition for it. */
1654 if (! TREE_USED (fndecl))
1655 {
1656 assemble_external (fndecl);
1657 TREE_USED (fndecl) = 1;
1658 }
1659
1660 /* Get a SYMBOL_REF rtx for the function address. */
1661 funexp = XEXP (DECL_RTL (fndecl), 0);
1662 }
1663 else
1664 /* Generate an rtx (probably a pseudo-register) for the address. */
1665 {
91ab1046 1666 rtx funaddr;
a45bdd02 1667 push_temp_slots ();
f725a3ec
KH
1668 funaddr = funexp =
1669 expand_expr (TREE_OPERAND (exp, 0), NULL_RTX, VOIDmode, 0);
1670 pop_temp_slots (); /* FUNEXP can't be BLKmode. */
a45bdd02
JL
1671
1672 /* Check the function is executable. */
1673 if (current_function_check_memory_usage)
91ab1046
DT
1674 {
1675#ifdef POINTERS_EXTEND_UNSIGNED
1676 /* It might be OK to convert funexp in place, but there's
1677 a lot going on between here and when it happens naturally
f725a3ec
KH
1678 that this seems safer. */
1679 funaddr = convert_memory_address (Pmode, funexp);
91ab1046 1680#endif
ebb1b59a
BS
1681 emit_library_call (chkr_check_exec_libfunc, LCT_CONST_MAKE_BLOCK,
1682 VOIDmode, 1, funaddr, Pmode);
91ab1046 1683 }
a45bdd02
JL
1684 emit_queue ();
1685 }
1686 return funexp;
1687}
1688
21a3b983
JL
1689/* Do the register loads required for any wholly-register parms or any
1690 parms which are passed both on the stack and in a register. Their
f725a3ec 1691 expressions were already evaluated.
21a3b983
JL
1692
1693 Mark all register-parms as living through the call, putting these USE
1694 insns in the CALL_INSN_FUNCTION_USAGE field. */
1695
1696static void
099e9712 1697load_register_parameters (args, num_actuals, call_fusage, flags)
21a3b983
JL
1698 struct arg_data *args;
1699 int num_actuals;
1700 rtx *call_fusage;
099e9712 1701 int flags;
21a3b983
JL
1702{
1703 int i, j;
1704
1705#ifdef LOAD_ARGS_REVERSED
1706 for (i = num_actuals - 1; i >= 0; i--)
1707#else
1708 for (i = 0; i < num_actuals; i++)
1709#endif
1710 {
099e9712
JH
1711 rtx reg = ((flags & ECF_SIBCALL)
1712 ? args[i].tail_call_reg : args[i].reg);
21a3b983
JL
1713 int partial = args[i].partial;
1714 int nregs;
1715
1716 if (reg)
1717 {
1718 /* Set to non-negative if must move a word at a time, even if just
1719 one word (e.g, partial == 1 && mode == DFmode). Set to -1 if
1720 we just use a normal move insn. This value can be zero if the
1721 argument is a zero size structure with no fields. */
1722 nregs = (partial ? partial
1723 : (TYPE_MODE (TREE_TYPE (args[i].tree_value)) == BLKmode
1724 ? ((int_size_in_bytes (TREE_TYPE (args[i].tree_value))
1725 + (UNITS_PER_WORD - 1)) / UNITS_PER_WORD)
1726 : -1));
1727
1728 /* Handle calls that pass values in multiple non-contiguous
1729 locations. The Irix 6 ABI has examples of this. */
1730
1731 if (GET_CODE (reg) == PARALLEL)
19caa751
RK
1732 emit_group_load (reg, args[i].value,
1733 int_size_in_bytes (TREE_TYPE (args[i].tree_value)),
1734 TYPE_ALIGN (TREE_TYPE (args[i].tree_value)));
21a3b983
JL
1735
1736 /* If simple case, just do move. If normal partial, store_one_arg
1737 has already loaded the register for us. In all other cases,
1738 load the register(s) from memory. */
1739
1740 else if (nregs == -1)
1741 emit_move_insn (reg, args[i].value);
1742
1743 /* If we have pre-computed the values to put in the registers in
1744 the case of non-aligned structures, copy them in now. */
1745
1746 else if (args[i].n_aligned_regs != 0)
1747 for (j = 0; j < args[i].n_aligned_regs; j++)
1748 emit_move_insn (gen_rtx_REG (word_mode, REGNO (reg) + j),
1749 args[i].aligned_regs[j]);
1750
1751 else if (partial == 0 || args[i].pass_on_stack)
1752 move_block_to_reg (REGNO (reg),
1753 validize_mem (args[i].value), nregs,
1754 args[i].mode);
1755
1756 /* Handle calls that pass values in multiple non-contiguous
1757 locations. The Irix 6 ABI has examples of this. */
1758 if (GET_CODE (reg) == PARALLEL)
1759 use_group_regs (call_fusage, reg);
1760 else if (nregs == -1)
1761 use_reg (call_fusage, reg);
1762 else
1763 use_regs (call_fusage, REGNO (reg), nregs == 0 ? 1 : nregs);
1764 }
1765 }
1766}
1767
ea11ca7e 1768/* Try to integrate function. See expand_inline_function for documentation
f2d33f13
JH
1769 about the parameters. */
1770
1771static rtx
1772try_to_integrate (fndecl, actparms, target, ignore, type, structure_value_addr)
1773 tree fndecl;
1774 tree actparms;
1775 rtx target;
1776 int ignore;
1777 tree type;
1778 rtx structure_value_addr;
1779{
1780 rtx temp;
1781 rtx before_call;
1782 int i;
1783 rtx old_stack_level = 0;
7657ad0a 1784 int reg_parm_stack_space = 0;
f2d33f13
JH
1785
1786#ifdef REG_PARM_STACK_SPACE
1787#ifdef MAYBE_REG_PARM_STACK_SPACE
1788 reg_parm_stack_space = MAYBE_REG_PARM_STACK_SPACE;
1789#else
1790 reg_parm_stack_space = REG_PARM_STACK_SPACE (fndecl);
1791#endif
1792#endif
1793
1794 before_call = get_last_insn ();
1795
ea11ca7e
JM
1796 timevar_push (TV_INTEGRATION);
1797
f2d33f13
JH
1798 temp = expand_inline_function (fndecl, actparms, target,
1799 ignore, type,
1800 structure_value_addr);
1801
ea11ca7e
JM
1802 timevar_pop (TV_INTEGRATION);
1803
f2d33f13
JH
1804 /* If inlining succeeded, return. */
1805 if (temp != (rtx) (HOST_WIDE_INT) - 1)
1806 {
1807 if (ACCUMULATE_OUTGOING_ARGS)
1808 {
1809 /* If the outgoing argument list must be preserved, push
1810 the stack before executing the inlined function if it
1811 makes any calls. */
1812
1813 for (i = reg_parm_stack_space - 1; i >= 0; i--)
1814 if (i < highest_outgoing_arg_in_use && stack_usage_map[i] != 0)
1815 break;
1816
1817 if (stack_arg_under_construction || i >= 0)
1818 {
1819 rtx first_insn
1820 = before_call ? NEXT_INSN (before_call) : get_insns ();
1821 rtx insn = NULL_RTX, seq;
1822
1823 /* Look for a call in the inline function code.
1824 If DECL_SAVED_INSNS (fndecl)->outgoing_args_size is
1825 nonzero then there is a call and it is not necessary
1826 to scan the insns. */
1827
1828 if (DECL_SAVED_INSNS (fndecl)->outgoing_args_size == 0)
1829 for (insn = first_insn; insn; insn = NEXT_INSN (insn))
1830 if (GET_CODE (insn) == CALL_INSN)
1831 break;
1832
1833 if (insn)
1834 {
1835 /* Reserve enough stack space so that the largest
1836 argument list of any function call in the inline
1837 function does not overlap the argument list being
1838 evaluated. This is usually an overestimate because
1839 allocate_dynamic_stack_space reserves space for an
1840 outgoing argument list in addition to the requested
1841 space, but there is no way to ask for stack space such
1842 that an argument list of a certain length can be
f725a3ec 1843 safely constructed.
f2d33f13
JH
1844
1845 Add the stack space reserved for register arguments, if
1846 any, in the inline function. What is really needed is the
1847 largest value of reg_parm_stack_space in the inline
1848 function, but that is not available. Using the current
1849 value of reg_parm_stack_space is wrong, but gives
1850 correct results on all supported machines. */
1851
1852 int adjust = (DECL_SAVED_INSNS (fndecl)->outgoing_args_size
1853 + reg_parm_stack_space);
1854
1855 start_sequence ();
1856 emit_stack_save (SAVE_BLOCK, &old_stack_level, NULL_RTX);
1857 allocate_dynamic_stack_space (GEN_INT (adjust),
1858 NULL_RTX, BITS_PER_UNIT);
1859 seq = get_insns ();
1860 end_sequence ();
1861 emit_insns_before (seq, first_insn);
1862 emit_stack_restore (SAVE_BLOCK, old_stack_level, NULL_RTX);
1863 }
1864 }
1865 }
1866
1867 /* If the result is equivalent to TARGET, return TARGET to simplify
1868 checks in store_expr. They can be equivalent but not equal in the
1869 case of a function that returns BLKmode. */
1870 if (temp != target && rtx_equal_p (temp, target))
1871 return target;
1872 return temp;
1873 }
1874
1875 /* If inlining failed, mark FNDECL as needing to be compiled
1876 separately after all. If function was declared inline,
1877 give a warning. */
1878 if (DECL_INLINE (fndecl) && warn_inline && !flag_no_inline
1879 && optimize > 0 && !TREE_ADDRESSABLE (fndecl))
1880 {
1881 warning_with_decl (fndecl, "inlining failed in call to `%s'");
1882 warning ("called from here");
1883 }
1884 mark_addressable (fndecl);
1885 return (rtx) (HOST_WIDE_INT) - 1;
1886}
1887
739fb049
MM
1888/* We need to pop PENDING_STACK_ADJUST bytes. But, if the arguments
1889 wouldn't fill up an even multiple of PREFERRED_UNIT_STACK_BOUNDARY
1890 bytes, then we would need to push some additional bytes to pad the
ce48579b
RH
1891 arguments. So, we compute an adjust to the stack pointer for an
1892 amount that will leave the stack under-aligned by UNADJUSTED_ARGS_SIZE
1893 bytes. Then, when the arguments are pushed the stack will be perfectly
1894 aligned. ARGS_SIZE->CONSTANT is set to the number of bytes that should
1895 be popped after the call. Returns the adjustment. */
739fb049 1896
ce48579b 1897static int
739fb049
MM
1898combine_pending_stack_adjustment_and_call (unadjusted_args_size,
1899 args_size,
1900 preferred_unit_stack_boundary)
1901 int unadjusted_args_size;
1902 struct args_size *args_size;
1903 int preferred_unit_stack_boundary;
1904{
1905 /* The number of bytes to pop so that the stack will be
1906 under-aligned by UNADJUSTED_ARGS_SIZE bytes. */
1907 HOST_WIDE_INT adjustment;
1908 /* The alignment of the stack after the arguments are pushed, if we
1909 just pushed the arguments without adjust the stack here. */
1910 HOST_WIDE_INT unadjusted_alignment;
1911
f725a3ec 1912 unadjusted_alignment
739fb049
MM
1913 = ((stack_pointer_delta + unadjusted_args_size)
1914 % preferred_unit_stack_boundary);
1915
1916 /* We want to get rid of as many of the PENDING_STACK_ADJUST bytes
1917 as possible -- leaving just enough left to cancel out the
1918 UNADJUSTED_ALIGNMENT. In other words, we want to ensure that the
1919 PENDING_STACK_ADJUST is non-negative, and congruent to
1920 -UNADJUSTED_ALIGNMENT modulo the PREFERRED_UNIT_STACK_BOUNDARY. */
1921
1922 /* Begin by trying to pop all the bytes. */
f725a3ec
KH
1923 unadjusted_alignment
1924 = (unadjusted_alignment
739fb049
MM
1925 - (pending_stack_adjust % preferred_unit_stack_boundary));
1926 adjustment = pending_stack_adjust;
1927 /* Push enough additional bytes that the stack will be aligned
1928 after the arguments are pushed. */
e079dcdb
HB
1929 if (preferred_unit_stack_boundary > 1)
1930 {
3e555c7d 1931 if (unadjusted_alignment > 0)
f725a3ec 1932 adjustment -= preferred_unit_stack_boundary - unadjusted_alignment;
e079dcdb 1933 else
f725a3ec 1934 adjustment += unadjusted_alignment;
e079dcdb 1935 }
f725a3ec 1936
739fb049
MM
1937 /* Now, sets ARGS_SIZE->CONSTANT so that we pop the right number of
1938 bytes after the call. The right number is the entire
1939 PENDING_STACK_ADJUST less our ADJUSTMENT plus the amount required
1940 by the arguments in the first place. */
f725a3ec 1941 args_size->constant
739fb049
MM
1942 = pending_stack_adjust - adjustment + unadjusted_args_size;
1943
ce48579b 1944 return adjustment;
739fb049
MM
1945}
1946
c67846f2
JJ
1947/* Scan X expression if it does not dereference any argument slots
1948 we already clobbered by tail call arguments (as noted in stored_args_map
1949 bitmap).
1950 Return non-zero if X expression dereferences such argument slots,
1951 zero otherwise. */
1952
1953static int
1954check_sibcall_argument_overlap_1 (x)
1955 rtx x;
1956{
1957 RTX_CODE code;
1958 int i, j;
1959 unsigned int k;
1960 const char *fmt;
1961
1962 if (x == NULL_RTX)
1963 return 0;
1964
1965 code = GET_CODE (x);
1966
1967 if (code == MEM)
1968 {
1969 if (XEXP (x, 0) == current_function_internal_arg_pointer)
1970 i = 0;
4c6b3b2a
JJ
1971 else if (GET_CODE (XEXP (x, 0)) == PLUS
1972 && XEXP (XEXP (x, 0), 0) ==
1973 current_function_internal_arg_pointer
1974 && GET_CODE (XEXP (XEXP (x, 0), 1)) == CONST_INT)
c67846f2
JJ
1975 i = INTVAL (XEXP (XEXP (x, 0), 1));
1976 else
1977 return 0;
1978
d60eab50
AO
1979#ifdef ARGS_GROW_DOWNWARD
1980 i = -i - GET_MODE_SIZE (GET_MODE (x));
1981#endif
1982
c67846f2
JJ
1983 for (k = 0; k < GET_MODE_SIZE (GET_MODE (x)); k++)
1984 if (i + k < stored_args_map->n_bits
1985 && TEST_BIT (stored_args_map, i + k))
1986 return 1;
1987
1988 return 0;
1989 }
1990
f725a3ec 1991 /* Scan all subexpressions. */
c67846f2
JJ
1992 fmt = GET_RTX_FORMAT (code);
1993 for (i = 0; i < GET_RTX_LENGTH (code); i++, fmt++)
1994 {
1995 if (*fmt == 'e')
f725a3ec
KH
1996 {
1997 if (check_sibcall_argument_overlap_1 (XEXP (x, i)))
1998 return 1;
1999 }
c67846f2 2000 else if (*fmt == 'E')
f725a3ec
KH
2001 {
2002 for (j = 0; j < XVECLEN (x, i); j++)
2003 if (check_sibcall_argument_overlap_1 (XVECEXP (x, i, j)))
2004 return 1;
2005 }
c67846f2
JJ
2006 }
2007 return 0;
c67846f2
JJ
2008}
2009
2010/* Scan sequence after INSN if it does not dereference any argument slots
2011 we already clobbered by tail call arguments (as noted in stored_args_map
2012 bitmap). Add stack slots for ARG to stored_args_map bitmap afterwards.
2013 Return non-zero if sequence after INSN dereferences such argument slots,
2014 zero otherwise. */
2015
2016static int
2017check_sibcall_argument_overlap (insn, arg)
2018 rtx insn;
2019 struct arg_data *arg;
f725a3ec 2020{
c67846f2
JJ
2021 int low, high;
2022
2023 if (insn == NULL_RTX)
2024 insn = get_insns ();
2025 else
2026 insn = NEXT_INSN (insn);
2027
2028 for (; insn; insn = NEXT_INSN (insn))
f725a3ec
KH
2029 if (INSN_P (insn)
2030 && check_sibcall_argument_overlap_1 (PATTERN (insn)))
c67846f2
JJ
2031 break;
2032
d60eab50
AO
2033#ifdef ARGS_GROW_DOWNWARD
2034 low = -arg->offset.constant - arg->size.constant;
2035#else
c67846f2 2036 low = arg->offset.constant;
d60eab50
AO
2037#endif
2038
c67846f2
JJ
2039 for (high = low + arg->size.constant; low < high; low++)
2040 SET_BIT (stored_args_map, low);
2041 return insn != NULL_RTX;
2042}
2043
51bbfa0c
RS
2044/* Generate all the code for a function call
2045 and return an rtx for its value.
2046 Store the value in TARGET (specified as an rtx) if convenient.
2047 If the value is stored in TARGET then TARGET is returned.
2048 If IGNORE is nonzero, then we ignore the value of the function call. */
2049
2050rtx
8129842c 2051expand_call (exp, target, ignore)
51bbfa0c
RS
2052 tree exp;
2053 rtx target;
2054 int ignore;
51bbfa0c 2055{
0a1c58a2
JL
2056 /* Nonzero if we are currently expanding a call. */
2057 static int currently_expanding_call = 0;
2058
51bbfa0c
RS
2059 /* List of actual parameters. */
2060 tree actparms = TREE_OPERAND (exp, 1);
2061 /* RTX for the function to be called. */
2062 rtx funexp;
0a1c58a2
JL
2063 /* Sequence of insns to perform a tail recursive "call". */
2064 rtx tail_recursion_insns = NULL_RTX;
2065 /* Sequence of insns to perform a normal "call". */
2066 rtx normal_call_insns = NULL_RTX;
2067 /* Sequence of insns to perform a tail recursive "call". */
2068 rtx tail_call_insns = NULL_RTX;
51bbfa0c
RS
2069 /* Data type of the function. */
2070 tree funtype;
2071 /* Declaration of the function being called,
2072 or 0 if the function is computed (not known by name). */
2073 tree fndecl = 0;
0a1c58a2 2074 rtx insn;
099e9712
JH
2075 int try_tail_call = 1;
2076 int try_tail_recursion = 1;
0a1c58a2 2077 int pass;
51bbfa0c
RS
2078
2079 /* Register in which non-BLKmode value will be returned,
2080 or 0 if no value or if value is BLKmode. */
2081 rtx valreg;
2082 /* Address where we should return a BLKmode value;
2083 0 if value not BLKmode. */
2084 rtx structure_value_addr = 0;
2085 /* Nonzero if that address is being passed by treating it as
2086 an extra, implicit first parameter. Otherwise,
2087 it is passed by being copied directly into struct_value_rtx. */
2088 int structure_value_addr_parm = 0;
2089 /* Size of aggregate value wanted, or zero if none wanted
2090 or if we are using the non-reentrant PCC calling convention
2091 or expecting the value in registers. */
e5e809f4 2092 HOST_WIDE_INT struct_value_size = 0;
51bbfa0c
RS
2093 /* Nonzero if called function returns an aggregate in memory PCC style,
2094 by returning the address of where to find it. */
2095 int pcc_struct_value = 0;
2096
2097 /* Number of actual parameters in this call, including struct value addr. */
2098 int num_actuals;
2099 /* Number of named args. Args after this are anonymous ones
2100 and they must all go on the stack. */
2101 int n_named_args;
51bbfa0c
RS
2102
2103 /* Vector of information about each argument.
2104 Arguments are numbered in the order they will be pushed,
2105 not the order they are written. */
2106 struct arg_data *args;
2107
2108 /* Total size in bytes of all the stack-parms scanned so far. */
2109 struct args_size args_size;
099e9712 2110 struct args_size adjusted_args_size;
51bbfa0c 2111 /* Size of arguments before any adjustments (such as rounding). */
599f37b6 2112 int unadjusted_args_size;
51bbfa0c
RS
2113 /* Data on reg parms scanned so far. */
2114 CUMULATIVE_ARGS args_so_far;
2115 /* Nonzero if a reg parm has been scanned. */
2116 int reg_parm_seen;
efd65a8b 2117 /* Nonzero if this is an indirect function call. */
51bbfa0c 2118
f725a3ec 2119 /* Nonzero if we must avoid push-insns in the args for this call.
51bbfa0c
RS
2120 If stack space is allocated for register parameters, but not by the
2121 caller, then it is preallocated in the fixed part of the stack frame.
2122 So the entire argument block must then be preallocated (i.e., we
2123 ignore PUSH_ROUNDING in that case). */
2124
f73ad30e 2125 int must_preallocate = !PUSH_ARGS;
51bbfa0c 2126
f72aed24 2127 /* Size of the stack reserved for parameter registers. */
6f90e075
JW
2128 int reg_parm_stack_space = 0;
2129
51bbfa0c
RS
2130 /* Address of space preallocated for stack parms
2131 (on machines that lack push insns), or 0 if space not preallocated. */
2132 rtx argblock = 0;
2133
f2d33f13
JH
2134 /* Mask of ECF_ flags. */
2135 int flags = 0;
51bbfa0c
RS
2136 /* Nonzero if this is a call to an inline function. */
2137 int is_integrable = 0;
f73ad30e 2138#ifdef REG_PARM_STACK_SPACE
51bbfa0c
RS
2139 /* Define the boundary of the register parm stack space that needs to be
2140 save, if any. */
2141 int low_to_save = -1, high_to_save;
2142 rtx save_area = 0; /* Place that it is saved */
2143#endif
2144
51bbfa0c
RS
2145 int initial_highest_arg_in_use = highest_outgoing_arg_in_use;
2146 char *initial_stack_usage_map = stack_usage_map;
a544cfd2 2147 int old_stack_arg_under_construction = 0;
51bbfa0c
RS
2148
2149 rtx old_stack_level = 0;
79be3418 2150 int old_pending_adj = 0;
51bbfa0c 2151 int old_inhibit_defer_pop = inhibit_defer_pop;
1503a7ec 2152 int old_stack_allocated;
0a1c58a2 2153 rtx call_fusage;
7393c642 2154 register tree p = TREE_OPERAND (exp, 0);
21a3b983 2155 register int i;
739fb049
MM
2156 /* The alignment of the stack, in bits. */
2157 HOST_WIDE_INT preferred_stack_boundary;
2158 /* The alignment of the stack, in bytes. */
2159 HOST_WIDE_INT preferred_unit_stack_boundary;
51bbfa0c 2160
7815214e
RK
2161 /* The value of the function call can be put in a hard register. But
2162 if -fcheck-memory-usage, code which invokes functions (and thus
2163 damages some hard registers) can be inserted before using the value.
2164 So, target is always a pseudo-register in that case. */
7d384cc0 2165 if (current_function_check_memory_usage)
7815214e
RK
2166 target = 0;
2167
f2d33f13
JH
2168 /* See if this is "nothrow" function call. */
2169 if (TREE_NOTHROW (exp))
2170 flags |= ECF_NOTHROW;
2171
51bbfa0c
RS
2172 /* See if we can find a DECL-node for the actual function.
2173 As a result, decide whether this is a call to an integrable function. */
2174
39b0dce7
JM
2175 fndecl = get_callee_fndecl (exp);
2176 if (fndecl)
51bbfa0c 2177 {
39b0dce7
JM
2178 if (!flag_no_inline
2179 && fndecl != current_function_decl
2180 && DECL_INLINE (fndecl)
2181 && DECL_SAVED_INSNS (fndecl)
2182 && DECL_SAVED_INSNS (fndecl)->inlinable)
2183 is_integrable = 1;
2184 else if (! TREE_ADDRESSABLE (fndecl))
51bbfa0c 2185 {
39b0dce7
JM
2186 /* In case this function later becomes inlinable,
2187 record that there was already a non-inline call to it.
51bbfa0c 2188
39b0dce7
JM
2189 Use abstraction instead of setting TREE_ADDRESSABLE
2190 directly. */
2191 if (DECL_INLINE (fndecl) && warn_inline && !flag_no_inline
2192 && optimize > 0)
2193 {
2194 warning_with_decl (fndecl, "can't inline call to `%s'");
2195 warning ("called from here");
51bbfa0c 2196 }
39b0dce7 2197 mark_addressable (fndecl);
51bbfa0c 2198 }
39b0dce7
JM
2199
2200 flags |= flags_from_decl_or_type (fndecl);
51bbfa0c
RS
2201 }
2202
f725a3ec 2203 /* If we don't have specific function to call, see if we have a
f2d33f13 2204 attributes set in the type. */
39b0dce7 2205 else
7393c642
RK
2206 flags |= flags_from_decl_or_type (TREE_TYPE (TREE_TYPE (p)));
2207
2208 /* Mark if the function returns with the stack pointer depressed. */
43db0363
RK
2209 if (TREE_CODE (TREE_TYPE (TREE_TYPE (p))) == FUNCTION_TYPE
2210 && TYPE_RETURNS_STACK_DEPRESSED (TREE_TYPE (TREE_TYPE (p))))
39b0dce7 2211 {
7393c642 2212 flags |= ECF_SP_DEPRESSED;
f725a3ec 2213 flags &= ~(ECF_PURE | ECF_CONST);
39b0dce7 2214 }
fdff8c6d 2215
6f90e075
JW
2216#ifdef REG_PARM_STACK_SPACE
2217#ifdef MAYBE_REG_PARM_STACK_SPACE
2218 reg_parm_stack_space = MAYBE_REG_PARM_STACK_SPACE;
2219#else
2220 reg_parm_stack_space = REG_PARM_STACK_SPACE (fndecl);
2221#endif
2222#endif
2223
f73ad30e
JH
2224#ifndef OUTGOING_REG_PARM_STACK_SPACE
2225 if (reg_parm_stack_space > 0 && PUSH_ARGS)
e5e809f4
JL
2226 must_preallocate = 1;
2227#endif
2228
51bbfa0c
RS
2229 /* Warn if this value is an aggregate type,
2230 regardless of which calling convention we are using for it. */
05e3bdb9 2231 if (warn_aggregate_return && AGGREGATE_TYPE_P (TREE_TYPE (exp)))
51bbfa0c
RS
2232 warning ("function call has aggregate value");
2233
2234 /* Set up a place to return a structure. */
2235
2236 /* Cater to broken compilers. */
2237 if (aggregate_value_p (exp))
2238 {
2239 /* This call returns a big structure. */
2a8f6b90 2240 flags &= ~(ECF_CONST | ECF_PURE);
51bbfa0c
RS
2241
2242#ifdef PCC_STATIC_STRUCT_RETURN
9e7b1d0a
RS
2243 {
2244 pcc_struct_value = 1;
0dd532dc
JW
2245 /* Easier than making that case work right. */
2246 if (is_integrable)
2247 {
2248 /* In case this is a static function, note that it has been
2249 used. */
2250 if (! TREE_ADDRESSABLE (fndecl))
2251 mark_addressable (fndecl);
2252 is_integrable = 0;
2253 }
9e7b1d0a
RS
2254 }
2255#else /* not PCC_STATIC_STRUCT_RETURN */
2256 {
2257 struct_value_size = int_size_in_bytes (TREE_TYPE (exp));
51bbfa0c 2258
9e7b1d0a
RS
2259 if (target && GET_CODE (target) == MEM)
2260 structure_value_addr = XEXP (target, 0);
2261 else
2262 {
4361b41d 2263 rtx d;
51bbfa0c 2264
9e7b1d0a
RS
2265 /* For variable-sized objects, we must be called with a target
2266 specified. If we were to allocate space on the stack here,
2267 we would have no way of knowing when to free it. */
51bbfa0c 2268
002bdd6c
RK
2269 if (struct_value_size < 0)
2270 abort ();
2271
4361b41d
MM
2272 d = assign_temp (TREE_TYPE (exp), 1, 1, 1);
2273 mark_temp_addr_taken (d);
2274 structure_value_addr = XEXP (d, 0);
9e7b1d0a
RS
2275 target = 0;
2276 }
2277 }
2278#endif /* not PCC_STATIC_STRUCT_RETURN */
51bbfa0c
RS
2279 }
2280
2281 /* If called function is inline, try to integrate it. */
2282
2283 if (is_integrable)
2284 {
f2d33f13
JH
2285 rtx temp = try_to_integrate (fndecl, actparms, target,
2286 ignore, TREE_TYPE (exp),
2287 structure_value_addr);
2288 if (temp != (rtx) (HOST_WIDE_INT) - 1)
2289 return temp;
51bbfa0c
RS
2290 }
2291
099e9712
JH
2292 /* Figure out the amount to which the stack should be aligned. */
2293#ifdef PREFERRED_STACK_BOUNDARY
2294 preferred_stack_boundary = PREFERRED_STACK_BOUNDARY;
2295#else
2296 preferred_stack_boundary = STACK_BOUNDARY;
2297#endif
2298
2299 /* Operand 0 is a pointer-to-function; get the type of the function. */
2300 funtype = TREE_TYPE (TREE_OPERAND (exp, 0));
2301 if (! POINTER_TYPE_P (funtype))
2302 abort ();
2303 funtype = TREE_TYPE (funtype);
2304
2305 /* See if this is a call to a function that can return more than once
2306 or a call to longjmp or malloc. */
2307 flags |= special_function_p (fndecl, flags);
2308
2309 if (flags & ECF_MAY_BE_ALLOCA)
2310 current_function_calls_alloca = 1;
2311
2312 /* If struct_value_rtx is 0, it means pass the address
2313 as if it were an extra parameter. */
2314 if (structure_value_addr && struct_value_rtx == 0)
2315 {
2316 /* If structure_value_addr is a REG other than
2317 virtual_outgoing_args_rtx, we can use always use it. If it
2318 is not a REG, we must always copy it into a register.
2319 If it is virtual_outgoing_args_rtx, we must copy it to another
2320 register in some cases. */
2321 rtx temp = (GET_CODE (structure_value_addr) != REG
2322 || (ACCUMULATE_OUTGOING_ARGS
2323 && stack_arg_under_construction
2324 && structure_value_addr == virtual_outgoing_args_rtx)
2325 ? copy_addr_to_reg (structure_value_addr)
2326 : structure_value_addr);
2327
2328 actparms
2329 = tree_cons (error_mark_node,
2330 make_tree (build_pointer_type (TREE_TYPE (funtype)),
2331 temp),
2332 actparms);
2333 structure_value_addr_parm = 1;
2334 }
2335
2336 /* Count the arguments and set NUM_ACTUALS. */
2337 for (p = actparms, num_actuals = 0; p; p = TREE_CHAIN (p))
2338 num_actuals++;
2339
2340 /* Compute number of named args.
2341 Normally, don't include the last named arg if anonymous args follow.
2342 We do include the last named arg if STRICT_ARGUMENT_NAMING is nonzero.
2343 (If no anonymous args follow, the result of list_length is actually
2344 one too large. This is harmless.)
2345
2346 If PRETEND_OUTGOING_VARARGS_NAMED is set and STRICT_ARGUMENT_NAMING is
2347 zero, this machine will be able to place unnamed args that were
2348 passed in registers into the stack. So treat all args as named.
2349 This allows the insns emitting for a specific argument list to be
2350 independent of the function declaration.
2351
2352 If PRETEND_OUTGOING_VARARGS_NAMED is not set, we do not have any
2353 reliable way to pass unnamed args in registers, so we must force
2354 them into memory. */
2355
2356 if ((STRICT_ARGUMENT_NAMING
2357 || ! PRETEND_OUTGOING_VARARGS_NAMED)
2358 && TYPE_ARG_TYPES (funtype) != 0)
2359 n_named_args
2360 = (list_length (TYPE_ARG_TYPES (funtype))
2361 /* Don't include the last named arg. */
2362 - (STRICT_ARGUMENT_NAMING ? 0 : 1)
2363 /* Count the struct value address, if it is passed as a parm. */
2364 + structure_value_addr_parm);
2365 else
2366 /* If we know nothing, treat all args as named. */
2367 n_named_args = num_actuals;
2368
2369 /* Start updating where the next arg would go.
2370
2371 On some machines (such as the PA) indirect calls have a different
2372 calling convention than normal calls. The last argument in
2373 INIT_CUMULATIVE_ARGS tells the backend if this is an indirect call
2374 or not. */
2375 INIT_CUMULATIVE_ARGS (args_so_far, funtype, NULL_RTX, (fndecl == 0));
2376
099e9712 2377 /* Make a vector to hold all the information about each arg. */
f725a3ec 2378 args = (struct arg_data *) alloca (num_actuals * sizeof (struct arg_data));
099e9712
JH
2379 bzero ((char *) args, num_actuals * sizeof (struct arg_data));
2380
2381 /* Build up entries inthe ARGS array, compute the size of the arguments
2382 into ARGS_SIZE, etc. */
2383 initialize_argument_information (num_actuals, args, &args_size,
2384 n_named_args, actparms, fndecl,
2385 &args_so_far, reg_parm_stack_space,
2386 &old_stack_level, &old_pending_adj,
2387 &must_preallocate, &flags);
2388
2389 if (args_size.var)
2390 {
2391 /* If this function requires a variable-sized argument list, don't
2392 try to make a cse'able block for this call. We may be able to
2393 do this eventually, but it is too complicated to keep track of
2394 what insns go in the cse'able block and which don't. */
2395
2396 flags &= ~(ECF_CONST | ECF_PURE);
2397 must_preallocate = 1;
2398 }
2399
2400 /* Now make final decision about preallocating stack space. */
2401 must_preallocate = finalize_must_preallocate (must_preallocate,
2402 num_actuals, args,
2403 &args_size);
2404
2405 /* If the structure value address will reference the stack pointer, we
2406 must stabilize it. We don't need to do this if we know that we are
2407 not going to adjust the stack pointer in processing this call. */
2408
2409 if (structure_value_addr
2410 && (reg_mentioned_p (virtual_stack_dynamic_rtx, structure_value_addr)
2411 || reg_mentioned_p (virtual_outgoing_args_rtx,
2412 structure_value_addr))
2413 && (args_size.var
2414 || (!ACCUMULATE_OUTGOING_ARGS && args_size.constant)))
2415 structure_value_addr = copy_to_reg (structure_value_addr);
0a1c58a2 2416
194c7c45
RH
2417 /* Tail calls can make things harder to debug, and we're traditionally
2418 pushed these optimizations into -O2. Don't try if we're already
2419 expanding a call, as that means we're an argument. Similarly, if
2420 there's pending loops or cleanups we know there's code to follow
e2ee9912
RH
2421 the call.
2422
f725a3ec 2423 If rtx_equal_function_value_matters is false, that means we've
e2ee9912
RH
2424 finished with regular parsing. Which means that some of the
2425 machinery we use to generate tail-calls is no longer in place.
2426 This is most often true of sjlj-exceptions, which we couldn't
2427 tail-call to anyway. */
0a1c58a2 2428
099e9712
JH
2429 if (currently_expanding_call++ != 0
2430 || !flag_optimize_sibling_calls
2431 || !rtx_equal_function_value_matters
2432 || !stmt_loop_nest_empty ()
2433 || any_pending_cleanups (1)
2434 || args_size.var)
2435 try_tail_call = try_tail_recursion = 0;
2436
2437 /* Tail recursion fails, when we are not dealing with recursive calls. */
2438 if (!try_tail_recursion
2439 || TREE_CODE (TREE_OPERAND (exp, 0)) != ADDR_EXPR
2440 || TREE_OPERAND (TREE_OPERAND (exp, 0), 0) != current_function_decl)
2441 try_tail_recursion = 0;
2442
2443 /* Rest of purposes for tail call optimizations to fail. */
2444 if (
2445#ifdef HAVE_sibcall_epilogue
2446 !HAVE_sibcall_epilogue
2447#else
2448 1
2449#endif
2450 || !try_tail_call
2451 /* Doing sibling call optimization needs some work, since
2452 structure_value_addr can be allocated on the stack.
2453 It does not seem worth the effort since few optimizable
2454 sibling calls will return a structure. */
2455 || structure_value_addr != NULL_RTX
2456 /* If the register holding the address is a callee saved
2457 register, then we lose. We have no way to prevent that,
2458 so we only allow calls to named functions. */
2459 /* ??? This could be done by having the insn constraints
2460 use a register class that is all call-clobbered. Any
2461 reload insns generated to fix things up would appear
2462 before the sibcall_epilogue. */
2463 || fndecl == NULL_TREE
2464 || (flags & (ECF_RETURNS_TWICE | ECF_LONGJMP))
9a1ba437 2465 || TREE_THIS_VOLATILE (fndecl)
099e9712
JH
2466 || !FUNCTION_OK_FOR_SIBCALL (fndecl)
2467 /* If this function requires more stack slots than the current
2468 function, we cannot change it into a sibling call. */
2469 || args_size.constant > current_function_args_size
2470 /* If the callee pops its own arguments, then it must pop exactly
2471 the same number of arguments as the current function. */
2472 || RETURN_POPS_ARGS (fndecl, funtype, args_size.constant)
2473 != RETURN_POPS_ARGS (current_function_decl,
2474 TREE_TYPE (current_function_decl),
2475 current_function_args_size))
497eb8c3 2476 try_tail_call = 0;
497eb8c3 2477
099e9712
JH
2478 if (try_tail_call || try_tail_recursion)
2479 {
2480 int end, inc;
2481 actparms = NULL_TREE;
194c7c45
RH
2482 /* Ok, we're going to give the tail call the old college try.
2483 This means we're going to evaluate the function arguments
2484 up to three times. There are two degrees of badness we can
2485 encounter, those that can be unsaved and those that can't.
2486 (See unsafe_for_reeval commentary for details.)
2487
2488 Generate a new argument list. Pass safe arguments through
f725a3ec 2489 unchanged. For the easy badness wrap them in UNSAVE_EXPRs.
194c7c45 2490 For hard badness, evaluate them now and put their resulting
099e9712
JH
2491 rtx in a temporary VAR_DECL.
2492
2493 initialize_argument_information has ordered the array for the
2494 order to be pushed, and we must remember this when reconstructing
2495 the original argument orde. */
4d393a0b 2496
099e9712
JH
2497 if (PUSH_ARGS_REVERSED)
2498 {
2499 inc = 1;
2500 i = 0;
2501 end = num_actuals;
2502 }
2503 else
f725a3ec 2504 {
099e9712
JH
2505 inc = -1;
2506 i = num_actuals - 1;
2507 end = -1;
2508 }
2509
2510 for (; i != end; i += inc)
2511 {
2512 switch (unsafe_for_reeval (args[i].tree_value))
2513 {
f725a3ec
KH
2514 case 0: /* Safe. */
2515 break;
497eb8c3 2516
f725a3ec
KH
2517 case 1: /* Mildly unsafe. */
2518 args[i].tree_value = unsave_expr (args[i].tree_value);
2519 break;
497eb8c3 2520
f725a3ec
KH
2521 case 2: /* Wildly unsafe. */
2522 {
2523 tree var = build_decl (VAR_DECL, NULL_TREE,
099e9712
JH
2524 TREE_TYPE (args[i].tree_value));
2525 DECL_RTL (var) = expand_expr (args[i].tree_value, NULL_RTX,
f725a3ec 2526 VOIDmode, EXPAND_NORMAL);
099e9712 2527 args[i].tree_value = var;
f725a3ec
KH
2528 }
2529 break;
0a1c58a2 2530
f725a3ec
KH
2531 default:
2532 abort ();
2533 }
099e9712
JH
2534 /* We need to build actparms for optimize_tail_recursion. We can
2535 safely trash away TREE_PURPOSE, since it is unused by this
2536 function. */
2537 if (try_tail_recursion)
2538 actparms = tree_cons (NULL_TREE, args[i].tree_value, actparms);
2539 }
194c7c45
RH
2540 /* Expanding one of those dangerous arguments could have added
2541 cleanups, but otherwise give it a whirl. */
099e9712
JH
2542 if (any_pending_cleanups (1))
2543 try_tail_call = try_tail_recursion = 0;
0a1c58a2
JL
2544 }
2545
2546 /* Generate a tail recursion sequence when calling ourselves. */
2547
099e9712 2548 if (try_tail_recursion)
0a1c58a2
JL
2549 {
2550 /* We want to emit any pending stack adjustments before the tail
2551 recursion "call". That way we know any adjustment after the tail
2552 recursion call can be ignored if we indeed use the tail recursion
2553 call expansion. */
2554 int save_pending_stack_adjust = pending_stack_adjust;
1503a7ec 2555 int save_stack_pointer_delta = stack_pointer_delta;
0a1c58a2
JL
2556
2557 /* Use a new sequence to hold any RTL we generate. We do not even
2558 know if we will use this RTL yet. The final decision can not be
2559 made until after RTL generation for the entire function is
2560 complete. */
b06775f9 2561 start_sequence ();
f5e846c8
MM
2562 /* If expanding any of the arguments creates cleanups, we can't
2563 do a tailcall. So, we'll need to pop the pending cleanups
2564 list. If, however, all goes well, and there are no cleanups
2565 then the call to expand_start_target_temps will have no
2566 effect. */
2567 expand_start_target_temps ();
b06775f9 2568 if (optimize_tail_recursion (actparms, get_last_insn ()))
f5e846c8
MM
2569 {
2570 if (any_pending_cleanups (1))
2571 try_tail_call = try_tail_recursion = 0;
2572 else
2573 tail_recursion_insns = get_insns ();
2574 }
2575 expand_end_target_temps ();
0a1c58a2
JL
2576 end_sequence ();
2577
0a1c58a2
JL
2578 /* Restore the original pending stack adjustment for the sibling and
2579 normal call cases below. */
2580 pending_stack_adjust = save_pending_stack_adjust;
1503a7ec 2581 stack_pointer_delta = save_stack_pointer_delta;
0a1c58a2
JL
2582 }
2583
099e9712
JH
2584 if (profile_arc_flag && (flags & ECF_FORK_OR_EXEC))
2585 {
2586 /* A fork duplicates the profile information, and an exec discards
2587 it. We can't rely on fork/exec to be paired. So write out the
2588 profile information we have gathered so far, and clear it. */
2589 /* ??? When Linux's __clone is called with CLONE_VM set, profiling
2590 is subject to race conditions, just as with multithreaded
2591 programs. */
2592
2593 emit_library_call (gen_rtx_SYMBOL_REF (Pmode, "__bb_fork_func"), 0,
2594 VOIDmode, 0);
2595 }
0a1c58a2 2596
c2f8b491
JH
2597 /* Ensure current function's preferred stack boundary is at least
2598 what we need. We don't have to increase alignment for recursive
2599 functions. */
2600 if (cfun->preferred_stack_boundary < preferred_stack_boundary
2601 && fndecl != current_function_decl)
2602 cfun->preferred_stack_boundary = preferred_stack_boundary;
2603
099e9712 2604 preferred_unit_stack_boundary = preferred_stack_boundary / BITS_PER_UNIT;
497eb8c3 2605
099e9712 2606 function_call_count++;
39842893 2607
0a1c58a2
JL
2608 /* We want to make two insn chains; one for a sibling call, the other
2609 for a normal call. We will select one of the two chains after
2610 initial RTL generation is complete. */
2611 for (pass = 0; pass < 2; pass++)
2612 {
2613 int sibcall_failure = 0;
2614 /* We want to emit ay pending stack adjustments before the tail
2615 recursion "call". That way we know any adjustment after the tail
2616 recursion call can be ignored if we indeed use the tail recursion
2617 call expansion. */
5ac9118e
KG
2618 int save_pending_stack_adjust = 0;
2619 int save_stack_pointer_delta = 0;
0a1c58a2 2620 rtx insns;
7d167afd 2621 rtx before_call, next_arg_reg;
39842893 2622
0a1c58a2
JL
2623 if (pass == 0)
2624 {
099e9712 2625 if (! try_tail_call)
0a1c58a2 2626 continue;
51bbfa0c 2627
1c81f9fe
JM
2628 /* Emit any queued insns now; otherwise they would end up in
2629 only one of the alternates. */
2630 emit_queue ();
2631
0a1c58a2
JL
2632 /* State variables we need to save and restore between
2633 iterations. */
2634 save_pending_stack_adjust = pending_stack_adjust;
1503a7ec 2635 save_stack_pointer_delta = stack_pointer_delta;
0a1c58a2 2636 }
f2d33f13
JH
2637 if (pass)
2638 flags &= ~ECF_SIBCALL;
2639 else
2640 flags |= ECF_SIBCALL;
51bbfa0c 2641
0a1c58a2 2642 /* Other state variables that we must reinitialize each time
f2d33f13 2643 through the loop (that are not initialized by the loop itself). */
0a1c58a2
JL
2644 argblock = 0;
2645 call_fusage = 0;
fa76d9e0 2646
f725a3ec 2647 /* Start a new sequence for the normal call case.
51bbfa0c 2648
0a1c58a2
JL
2649 From this point on, if the sibling call fails, we want to set
2650 sibcall_failure instead of continuing the loop. */
2651 start_sequence ();
eecb6f50 2652
b8d254e6
JJ
2653 if (pass == 0)
2654 {
2655 /* We know at this point that there are not currently any
2656 pending cleanups. If, however, in the process of evaluating
2657 the arguments we were to create some, we'll need to be
2658 able to get rid of them. */
2659 expand_start_target_temps ();
2660 }
2661
0a1c58a2
JL
2662 /* When calling a const function, we must pop the stack args right away,
2663 so that the pop is deleted or moved with the call. */
2a8f6b90 2664 if (flags & (ECF_CONST | ECF_PURE))
0a1c58a2 2665 NO_DEFER_POP;
51bbfa0c 2666
0a1c58a2
JL
2667 /* Don't let pending stack adjusts add up to too much.
2668 Also, do all pending adjustments now if there is any chance
2669 this might be a call to alloca or if we are expanding a sibling
2670 call sequence. */
2671 if (pending_stack_adjust >= 32
f2d33f13 2672 || (pending_stack_adjust > 0 && (flags & ECF_MAY_BE_ALLOCA))
0a1c58a2
JL
2673 || pass == 0)
2674 do_pending_stack_adjust ();
51bbfa0c 2675
0a1c58a2
JL
2676 /* Push the temporary stack slot level so that we can free any
2677 temporaries we make. */
2678 push_temp_slots ();
51bbfa0c 2679
6f90e075 2680#ifdef FINAL_REG_PARM_STACK_SPACE
0a1c58a2
JL
2681 reg_parm_stack_space = FINAL_REG_PARM_STACK_SPACE (args_size.constant,
2682 args_size.var);
6f90e075 2683#endif
0a1c58a2 2684 /* Precompute any arguments as needed. */
f8a097cd
JH
2685 if (pass)
2686 precompute_arguments (flags, num_actuals, args);
51bbfa0c 2687
0a1c58a2
JL
2688 /* Now we are about to start emitting insns that can be deleted
2689 if a libcall is deleted. */
2a8f6b90 2690 if (flags & (ECF_CONST | ECF_PURE | ECF_MALLOC))
0a1c58a2 2691 start_sequence ();
51bbfa0c 2692
099e9712 2693 adjusted_args_size = args_size;
ce48579b
RH
2694 /* Compute the actual size of the argument block required. The variable
2695 and constant sizes must be combined, the size may have to be rounded,
2696 and there may be a minimum required size. When generating a sibcall
2697 pattern, do not round up, since we'll be re-using whatever space our
2698 caller provided. */
2699 unadjusted_args_size
f725a3ec
KH
2700 = compute_argument_block_size (reg_parm_stack_space,
2701 &adjusted_args_size,
ce48579b
RH
2702 (pass == 0 ? 0
2703 : preferred_stack_boundary));
2704
f725a3ec 2705 old_stack_allocated = stack_pointer_delta - pending_stack_adjust;
ce48579b 2706
f8a097cd
JH
2707 /* The argument block when performing a sibling call is the
2708 incoming argument block. */
2709 if (pass == 0)
c67846f2
JJ
2710 {
2711 argblock = virtual_incoming_args_rtx;
2712 stored_args_map = sbitmap_alloc (args_size.constant);
2713 sbitmap_zero (stored_args_map);
2714 }
ce48579b 2715
0a1c58a2
JL
2716 /* If we have no actual push instructions, or shouldn't use them,
2717 make space for all args right now. */
099e9712 2718 else if (adjusted_args_size.var != 0)
51bbfa0c 2719 {
0a1c58a2
JL
2720 if (old_stack_level == 0)
2721 {
2722 emit_stack_save (SAVE_BLOCK, &old_stack_level, NULL_RTX);
2723 old_pending_adj = pending_stack_adjust;
2724 pending_stack_adjust = 0;
0a1c58a2
JL
2725 /* stack_arg_under_construction says whether a stack arg is
2726 being constructed at the old stack level. Pushing the stack
2727 gets a clean outgoing argument block. */
2728 old_stack_arg_under_construction = stack_arg_under_construction;
2729 stack_arg_under_construction = 0;
0a1c58a2 2730 }
099e9712 2731 argblock = push_block (ARGS_SIZE_RTX (adjusted_args_size), 0, 0);
51bbfa0c 2732 }
0a1c58a2
JL
2733 else
2734 {
2735 /* Note that we must go through the motions of allocating an argument
2736 block even if the size is zero because we may be storing args
2737 in the area reserved for register arguments, which may be part of
2738 the stack frame. */
26a258fe 2739
099e9712 2740 int needed = adjusted_args_size.constant;
51bbfa0c 2741
0a1c58a2
JL
2742 /* Store the maximum argument space used. It will be pushed by
2743 the prologue (if ACCUMULATE_OUTGOING_ARGS, or stack overflow
2744 checking). */
51bbfa0c 2745
0a1c58a2
JL
2746 if (needed > current_function_outgoing_args_size)
2747 current_function_outgoing_args_size = needed;
51bbfa0c 2748
0a1c58a2
JL
2749 if (must_preallocate)
2750 {
f73ad30e
JH
2751 if (ACCUMULATE_OUTGOING_ARGS)
2752 {
f8a097cd
JH
2753 /* Since the stack pointer will never be pushed, it is
2754 possible for the evaluation of a parm to clobber
2755 something we have already written to the stack.
2756 Since most function calls on RISC machines do not use
2757 the stack, this is uncommon, but must work correctly.
26a258fe 2758
f73ad30e 2759 Therefore, we save any area of the stack that was already
f8a097cd
JH
2760 written and that we are using. Here we set up to do this
2761 by making a new stack usage map from the old one. The
f725a3ec 2762 actual save will be done by store_one_arg.
26a258fe 2763
f73ad30e
JH
2764 Another approach might be to try to reorder the argument
2765 evaluations to avoid this conflicting stack usage. */
26a258fe 2766
e5e809f4 2767#ifndef OUTGOING_REG_PARM_STACK_SPACE
f8a097cd
JH
2768 /* Since we will be writing into the entire argument area,
2769 the map must be allocated for its entire size, not just
2770 the part that is the responsibility of the caller. */
f73ad30e 2771 needed += reg_parm_stack_space;
51bbfa0c
RS
2772#endif
2773
2774#ifdef ARGS_GROW_DOWNWARD
f73ad30e
JH
2775 highest_outgoing_arg_in_use = MAX (initial_highest_arg_in_use,
2776 needed + 1);
51bbfa0c 2777#else
f73ad30e
JH
2778 highest_outgoing_arg_in_use = MAX (initial_highest_arg_in_use,
2779 needed);
51bbfa0c 2780#endif
f8a097cd
JH
2781 stack_usage_map
2782 = (char *) alloca (highest_outgoing_arg_in_use);
51bbfa0c 2783
f73ad30e
JH
2784 if (initial_highest_arg_in_use)
2785 bcopy (initial_stack_usage_map, stack_usage_map,
2786 initial_highest_arg_in_use);
2f4aa534 2787
f73ad30e
JH
2788 if (initial_highest_arg_in_use != highest_outgoing_arg_in_use)
2789 bzero (&stack_usage_map[initial_highest_arg_in_use],
2790 (highest_outgoing_arg_in_use
2791 - initial_highest_arg_in_use));
2792 needed = 0;
2f4aa534 2793
f8a097cd
JH
2794 /* The address of the outgoing argument list must not be
2795 copied to a register here, because argblock would be left
2796 pointing to the wrong place after the call to
f725a3ec 2797 allocate_dynamic_stack_space below. */
2f4aa534 2798
f73ad30e 2799 argblock = virtual_outgoing_args_rtx;
f725a3ec 2800 }
f73ad30e 2801 else
26a258fe 2802 {
f73ad30e 2803 if (inhibit_defer_pop == 0)
0a1c58a2 2804 {
f73ad30e 2805 /* Try to reuse some or all of the pending_stack_adjust
ce48579b
RH
2806 to get this space. */
2807 needed
f725a3ec 2808 = (combine_pending_stack_adjustment_and_call
ce48579b 2809 (unadjusted_args_size,
099e9712 2810 &adjusted_args_size,
ce48579b
RH
2811 preferred_unit_stack_boundary));
2812
2813 /* combine_pending_stack_adjustment_and_call computes
2814 an adjustment before the arguments are allocated.
2815 Account for them and see whether or not the stack
2816 needs to go up or down. */
2817 needed = unadjusted_args_size - needed;
2818
2819 if (needed < 0)
f73ad30e 2820 {
ce48579b
RH
2821 /* We're releasing stack space. */
2822 /* ??? We can avoid any adjustment at all if we're
2823 already aligned. FIXME. */
2824 pending_stack_adjust = -needed;
2825 do_pending_stack_adjust ();
f73ad30e
JH
2826 needed = 0;
2827 }
f725a3ec 2828 else
ce48579b
RH
2829 /* We need to allocate space. We'll do that in
2830 push_block below. */
2831 pending_stack_adjust = 0;
0a1c58a2 2832 }
ce48579b
RH
2833
2834 /* Special case this because overhead of `push_block' in
2835 this case is non-trivial. */
f73ad30e
JH
2836 if (needed == 0)
2837 argblock = virtual_outgoing_args_rtx;
0a1c58a2 2838 else
f73ad30e
JH
2839 argblock = push_block (GEN_INT (needed), 0, 0);
2840
f8a097cd
JH
2841 /* We only really need to call `copy_to_reg' in the case
2842 where push insns are going to be used to pass ARGBLOCK
2843 to a function call in ARGS. In that case, the stack
2844 pointer changes value from the allocation point to the
2845 call point, and hence the value of
2846 VIRTUAL_OUTGOING_ARGS_RTX changes as well. But might
2847 as well always do it. */
f73ad30e 2848 argblock = copy_to_reg (argblock);
0a1c58a2 2849
f8a097cd 2850 /* The save/restore code in store_one_arg handles all
ce48579b
RH
2851 cases except one: a constructor call (including a C
2852 function returning a BLKmode struct) to initialize
2853 an argument. */
f8a097cd
JH
2854 if (stack_arg_under_construction)
2855 {
e5e809f4 2856#ifndef OUTGOING_REG_PARM_STACK_SPACE
ce48579b 2857 rtx push_size = GEN_INT (reg_parm_stack_space
099e9712 2858 + adjusted_args_size.constant);
bfbf933a 2859#else
099e9712 2860 rtx push_size = GEN_INT (adjusted_args_size.constant);
bfbf933a 2861#endif
f8a097cd
JH
2862 if (old_stack_level == 0)
2863 {
ce48579b
RH
2864 emit_stack_save (SAVE_BLOCK, &old_stack_level,
2865 NULL_RTX);
f8a097cd
JH
2866 old_pending_adj = pending_stack_adjust;
2867 pending_stack_adjust = 0;
ce48579b
RH
2868 /* stack_arg_under_construction says whether a stack
2869 arg is being constructed at the old stack level.
2870 Pushing the stack gets a clean outgoing argument
2871 block. */
2872 old_stack_arg_under_construction
2873 = stack_arg_under_construction;
f8a097cd
JH
2874 stack_arg_under_construction = 0;
2875 /* Make a new map for the new argument list. */
ce48579b
RH
2876 stack_usage_map = (char *)
2877 alloca (highest_outgoing_arg_in_use);
f8a097cd
JH
2878 bzero (stack_usage_map, highest_outgoing_arg_in_use);
2879 highest_outgoing_arg_in_use = 0;
2880 }
ce48579b
RH
2881 allocate_dynamic_stack_space (push_size, NULL_RTX,
2882 BITS_PER_UNIT);
f8a097cd 2883 }
ce48579b
RH
2884 /* If argument evaluation might modify the stack pointer,
2885 copy the address of the argument list to a register. */
f8a097cd
JH
2886 for (i = 0; i < num_actuals; i++)
2887 if (args[i].pass_on_stack)
2888 {
2889 argblock = copy_addr_to_reg (argblock);
2890 break;
2891 }
f73ad30e 2892 }
0a1c58a2 2893 }
bfbf933a 2894 }
bfbf933a 2895
0a1c58a2 2896 compute_argument_addresses (args, argblock, num_actuals);
bfbf933a 2897
c795bca9 2898#ifdef PREFERRED_STACK_BOUNDARY
0a1c58a2
JL
2899 /* If we push args individually in reverse order, perform stack alignment
2900 before the first push (the last arg). */
f73ad30e 2901 if (PUSH_ARGS_REVERSED && argblock == 0
099e9712 2902 && adjusted_args_size.constant != unadjusted_args_size)
4e217aed 2903 {
0a1c58a2
JL
2904 /* When the stack adjustment is pending, we get better code
2905 by combining the adjustments. */
f725a3ec 2906 if (pending_stack_adjust
739fb049 2907 && ! (flags & (ECF_CONST | ECF_PURE))
0a1c58a2 2908 && ! inhibit_defer_pop)
ce48579b
RH
2909 {
2910 pending_stack_adjust
f725a3ec 2911 = (combine_pending_stack_adjustment_and_call
ce48579b 2912 (unadjusted_args_size,
099e9712 2913 &adjusted_args_size,
ce48579b
RH
2914 preferred_unit_stack_boundary));
2915 do_pending_stack_adjust ();
2916 }
0a1c58a2 2917 else if (argblock == 0)
099e9712 2918 anti_adjust_stack (GEN_INT (adjusted_args_size.constant
0a1c58a2 2919 - unadjusted_args_size));
0a1c58a2 2920 }
ebcd0b57
JH
2921 /* Now that the stack is properly aligned, pops can't safely
2922 be deferred during the evaluation of the arguments. */
2923 NO_DEFER_POP;
51bbfa0c
RS
2924#endif
2925
0a1c58a2
JL
2926 /* Don't try to defer pops if preallocating, not even from the first arg,
2927 since ARGBLOCK probably refers to the SP. */
2928 if (argblock)
2929 NO_DEFER_POP;
51bbfa0c 2930
0a1c58a2 2931 funexp = rtx_for_function_call (fndecl, exp);
51bbfa0c 2932
0a1c58a2
JL
2933 /* Figure out the register where the value, if any, will come back. */
2934 valreg = 0;
2935 if (TYPE_MODE (TREE_TYPE (exp)) != VOIDmode
2936 && ! structure_value_addr)
2937 {
2938 if (pcc_struct_value)
2939 valreg = hard_function_value (build_pointer_type (TREE_TYPE (exp)),
7d167afd 2940 fndecl, (pass == 0));
0a1c58a2 2941 else
7d167afd 2942 valreg = hard_function_value (TREE_TYPE (exp), fndecl, (pass == 0));
0a1c58a2 2943 }
51bbfa0c 2944
0a1c58a2
JL
2945 /* Precompute all register parameters. It isn't safe to compute anything
2946 once we have started filling any specific hard regs. */
2947 precompute_register_parameters (num_actuals, args, &reg_parm_seen);
51bbfa0c 2948
f73ad30e 2949#ifdef REG_PARM_STACK_SPACE
0a1c58a2
JL
2950 /* Save the fixed argument area if it's part of the caller's frame and
2951 is clobbered by argument setup for this call. */
f8a097cd 2952 if (ACCUMULATE_OUTGOING_ARGS && pass)
f73ad30e
JH
2953 save_area = save_fixed_argument_area (reg_parm_stack_space, argblock,
2954 &low_to_save, &high_to_save);
b94301c2 2955#endif
51bbfa0c 2956
0a1c58a2
JL
2957 /* Now store (and compute if necessary) all non-register parms.
2958 These come before register parms, since they can require block-moves,
2959 which could clobber the registers used for register parms.
2960 Parms which have partial registers are not stored here,
2961 but we do preallocate space here if they want that. */
51bbfa0c 2962
0a1c58a2
JL
2963 for (i = 0; i < num_actuals; i++)
2964 if (args[i].reg == 0 || args[i].pass_on_stack)
c67846f2
JJ
2965 {
2966 rtx before_arg = get_last_insn ();
2967
4c6b3b2a
JJ
2968 if (store_one_arg (&args[i], argblock, flags,
2969 adjusted_args_size.var != 0,
2970 reg_parm_stack_space)
2971 || (pass == 0
2972 && check_sibcall_argument_overlap (before_arg,
2973 &args[i])))
c67846f2
JJ
2974 sibcall_failure = 1;
2975 }
0a1c58a2
JL
2976
2977 /* If we have a parm that is passed in registers but not in memory
2978 and whose alignment does not permit a direct copy into registers,
2979 make a group of pseudos that correspond to each register that we
2980 will later fill. */
2981 if (STRICT_ALIGNMENT)
2982 store_unaligned_arguments_into_pseudos (args, num_actuals);
2983
2984 /* Now store any partially-in-registers parm.
2985 This is the last place a block-move can happen. */
2986 if (reg_parm_seen)
2987 for (i = 0; i < num_actuals; i++)
2988 if (args[i].partial != 0 && ! args[i].pass_on_stack)
c67846f2
JJ
2989 {
2990 rtx before_arg = get_last_insn ();
2991
4c6b3b2a
JJ
2992 if (store_one_arg (&args[i], argblock, flags,
2993 adjusted_args_size.var != 0,
2994 reg_parm_stack_space)
2995 || (pass == 0
2996 && check_sibcall_argument_overlap (before_arg,
2997 &args[i])))
c67846f2
JJ
2998 sibcall_failure = 1;
2999 }
51bbfa0c 3000
c795bca9 3001#ifdef PREFERRED_STACK_BOUNDARY
0a1c58a2
JL
3002 /* If we pushed args in forward order, perform stack alignment
3003 after pushing the last arg. */
f73ad30e 3004 if (!PUSH_ARGS_REVERSED && argblock == 0)
099e9712 3005 anti_adjust_stack (GEN_INT (adjusted_args_size.constant
0a1c58a2 3006 - unadjusted_args_size));
51bbfa0c
RS
3007#endif
3008
0a1c58a2
JL
3009 /* If register arguments require space on the stack and stack space
3010 was not preallocated, allocate stack space here for arguments
3011 passed in registers. */
f73ad30e
JH
3012#ifdef OUTGOING_REG_PARM_STACK_SPACE
3013 if (!ACCUMULATE_OUTGOING_ARGS
f725a3ec 3014 && must_preallocate == 0 && reg_parm_stack_space > 0)
0a1c58a2 3015 anti_adjust_stack (GEN_INT (reg_parm_stack_space));
756e0e12
RS
3016#endif
3017
0a1c58a2
JL
3018 /* Pass the function the address in which to return a
3019 structure value. */
3020 if (pass != 0 && structure_value_addr && ! structure_value_addr_parm)
3021 {
3022 emit_move_insn (struct_value_rtx,
3023 force_reg (Pmode,
3024 force_operand (structure_value_addr,
3025 NULL_RTX)));
3026
3027 /* Mark the memory for the aggregate as write-only. */
3028 if (current_function_check_memory_usage)
ebb1b59a 3029 emit_library_call (chkr_set_right_libfunc, LCT_CONST_MAKE_BLOCK,
0a1c58a2 3030 VOIDmode, 3,
f725a3ec 3031 structure_value_addr, ptr_mode,
0a1c58a2
JL
3032 GEN_INT (struct_value_size),
3033 TYPE_MODE (sizetype),
3034 GEN_INT (MEMORY_USE_WO),
3035 TYPE_MODE (integer_type_node));
3036
3037 if (GET_CODE (struct_value_rtx) == REG)
3038 use_reg (&call_fusage, struct_value_rtx);
3039 }
c2939b57 3040
0a1c58a2
JL
3041 funexp = prepare_call_address (funexp, fndecl, &call_fusage,
3042 reg_parm_seen);
51bbfa0c 3043
099e9712 3044 load_register_parameters (args, num_actuals, &call_fusage, flags);
f725a3ec 3045
0a1c58a2
JL
3046 /* Perform postincrements before actually calling the function. */
3047 emit_queue ();
51bbfa0c 3048
0a1c58a2
JL
3049 /* Save a pointer to the last insn before the call, so that we can
3050 later safely search backwards to find the CALL_INSN. */
3051 before_call = get_last_insn ();
51bbfa0c 3052
7d167afd
JJ
3053 /* Set up next argument register. For sibling calls on machines
3054 with register windows this should be the incoming register. */
3055#ifdef FUNCTION_INCOMING_ARG
3056 if (pass == 0)
3057 next_arg_reg = FUNCTION_INCOMING_ARG (args_so_far, VOIDmode,
3058 void_type_node, 1);
3059 else
3060#endif
3061 next_arg_reg = FUNCTION_ARG (args_so_far, VOIDmode,
3062 void_type_node, 1);
3063
0a1c58a2
JL
3064 /* All arguments and registers used for the call must be set up by
3065 now! */
3066
ebcd0b57 3067#ifdef PREFERRED_STACK_BOUNDARY
ce48579b
RH
3068 /* Stack must be properly aligned now. */
3069 if (pass && stack_pointer_delta % preferred_unit_stack_boundary)
d9a7d592 3070 abort ();
ebcd0b57
JH
3071#endif
3072
0a1c58a2
JL
3073 /* Generate the actual call instruction. */
3074 emit_call_1 (funexp, fndecl, funtype, unadjusted_args_size,
099e9712 3075 adjusted_args_size.constant, struct_value_size,
7d167afd 3076 next_arg_reg, valreg, old_inhibit_defer_pop, call_fusage,
f2d33f13 3077 flags);
0a1c58a2 3078
1503a7ec
JH
3079 /* Verify that we've deallocated all the stack we used. */
3080 if (pass
f725a3ec
KH
3081 && old_stack_allocated != stack_pointer_delta - pending_stack_adjust)
3082 abort ();
1503a7ec 3083
0a1c58a2
JL
3084 /* If call is cse'able, make appropriate pair of reg-notes around it.
3085 Test valreg so we don't crash; may safely ignore `const'
3086 if return type is void. Disable for PARALLEL return values, because
3087 we have no way to move such values into a pseudo register. */
8be9eb00
RH
3088 if (pass
3089 && (flags & (ECF_CONST | ECF_PURE))
2a8f6b90 3090 && valreg != 0 && GET_CODE (valreg) != PARALLEL)
9ae8ffe7 3091 {
0a1c58a2
JL
3092 rtx note = 0;
3093 rtx temp = gen_reg_rtx (GET_MODE (valreg));
3094 rtx insns;
9ae8ffe7 3095
0a1c58a2
JL
3096 /* Mark the return value as a pointer if needed. */
3097 if (TREE_CODE (TREE_TYPE (exp)) == POINTER_TYPE)
bdb429a5 3098 mark_reg_pointer (temp, TYPE_ALIGN (TREE_TYPE (TREE_TYPE (exp))));
0a1c58a2
JL
3099
3100 /* Construct an "equal form" for the value which mentions all the
3101 arguments in order as well as the function name. */
5591ee6f
JH
3102 for (i = 0; i < num_actuals; i++)
3103 note = gen_rtx_EXPR_LIST (VOIDmode, args[i].initial_value, note);
0a1c58a2 3104 note = gen_rtx_EXPR_LIST (VOIDmode, funexp, note);
9ae8ffe7 3105
0a1c58a2
JL
3106 insns = get_insns ();
3107 end_sequence ();
9ae8ffe7 3108
2a8f6b90
JH
3109 if (flags & ECF_PURE)
3110 note = gen_rtx_EXPR_LIST (VOIDmode,
3111 gen_rtx_USE (VOIDmode,
3112 gen_rtx_MEM (BLKmode,
3113 gen_rtx_SCRATCH (VOIDmode))), note);
3114
0a1c58a2 3115 emit_libcall_block (insns, temp, valreg, note);
f725a3ec 3116
0a1c58a2
JL
3117 valreg = temp;
3118 }
2a8f6b90 3119 else if (flags & (ECF_CONST | ECF_PURE))
0a1c58a2
JL
3120 {
3121 /* Otherwise, just write out the sequence without a note. */
3122 rtx insns = get_insns ();
9ae8ffe7 3123
0a1c58a2
JL
3124 end_sequence ();
3125 emit_insns (insns);
3126 }
f2d33f13 3127 else if (flags & ECF_MALLOC)
0a1c58a2
JL
3128 {
3129 rtx temp = gen_reg_rtx (GET_MODE (valreg));
3130 rtx last, insns;
3131
f725a3ec 3132 /* The return value from a malloc-like function is a pointer. */
0a1c58a2 3133 if (TREE_CODE (TREE_TYPE (exp)) == POINTER_TYPE)
bdb429a5 3134 mark_reg_pointer (temp, BIGGEST_ALIGNMENT);
0a1c58a2
JL
3135
3136 emit_move_insn (temp, valreg);
3137
3138 /* The return value from a malloc-like function can not alias
3139 anything else. */
3140 last = get_last_insn ();
f725a3ec 3141 REG_NOTES (last) =
0a1c58a2
JL
3142 gen_rtx_EXPR_LIST (REG_NOALIAS, temp, REG_NOTES (last));
3143
3144 /* Write out the sequence. */
3145 insns = get_insns ();
3146 end_sequence ();
3147 emit_insns (insns);
3148 valreg = temp;
3149 }
51bbfa0c 3150
0a1c58a2
JL
3151 /* For calls to `setjmp', etc., inform flow.c it should complain
3152 if nonvolatile values are live. For functions that cannot return,
3153 inform flow that control does not fall through. */
51bbfa0c 3154
f2d33f13 3155 if ((flags & (ECF_RETURNS_TWICE | ECF_NORETURN | ECF_LONGJMP)) || pass == 0)
c2939b57 3156 {
0a1c58a2
JL
3157 /* The barrier or NOTE_INSN_SETJMP note must be emitted
3158 immediately after the CALL_INSN. Some ports emit more
3159 than just a CALL_INSN above, so we must search for it here. */
51bbfa0c 3160
0a1c58a2
JL
3161 rtx last = get_last_insn ();
3162 while (GET_CODE (last) != CALL_INSN)
3163 {
3164 last = PREV_INSN (last);
3165 /* There was no CALL_INSN? */
3166 if (last == before_call)
3167 abort ();
3168 }
51bbfa0c 3169
f2d33f13 3170 if (flags & ECF_RETURNS_TWICE)
0a1c58a2
JL
3171 {
3172 emit_note_after (NOTE_INSN_SETJMP, last);
3173 current_function_calls_setjmp = 1;
0a1c58a2
JL
3174 }
3175 else
3176 emit_barrier_after (last);
3177 }
51bbfa0c 3178
f2d33f13 3179 if (flags & ECF_LONGJMP)
099e9712 3180 current_function_calls_longjmp = 1;
51bbfa0c 3181
25a1fcb4
RK
3182 /* If this function is returning into a memory location marked as
3183 readonly, it means it is initializing that location. But we normally
3184 treat functions as not clobbering such locations, so we need to
3185 specify that this one does. */
3186 if (target != 0 && GET_CODE (target) == MEM
3187 && structure_value_addr != 0 && RTX_UNCHANGING_P (target))
3188 emit_insn (gen_rtx_CLOBBER (VOIDmode, target));
3189
0a1c58a2 3190 /* If value type not void, return an rtx for the value. */
51bbfa0c 3191
0a1c58a2
JL
3192 /* If there are cleanups to be called, don't use a hard reg as target.
3193 We need to double check this and see if it matters anymore. */
194c7c45
RH
3194 if (any_pending_cleanups (1))
3195 {
3196 if (target && REG_P (target)
3197 && REGNO (target) < FIRST_PSEUDO_REGISTER)
3198 target = 0;
3199 sibcall_failure = 1;
3200 }
51bbfa0c 3201
0a1c58a2
JL
3202 if (TYPE_MODE (TREE_TYPE (exp)) == VOIDmode
3203 || ignore)
29008b51 3204 {
0a1c58a2 3205 target = const0_rtx;
29008b51 3206 }
0a1c58a2
JL
3207 else if (structure_value_addr)
3208 {
3209 if (target == 0 || GET_CODE (target) != MEM)
3210 {
3bdf5ad1
RK
3211 target
3212 = gen_rtx_MEM (TYPE_MODE (TREE_TYPE (exp)),
3213 memory_address (TYPE_MODE (TREE_TYPE (exp)),
3214 structure_value_addr));
3215 set_mem_attributes (target, exp, 1);
0a1c58a2
JL
3216 }
3217 }
3218 else if (pcc_struct_value)
cacbd532 3219 {
0a1c58a2
JL
3220 /* This is the special C++ case where we need to
3221 know what the true target was. We take care to
3222 never use this value more than once in one expression. */
3223 target = gen_rtx_MEM (TYPE_MODE (TREE_TYPE (exp)),
3224 copy_to_reg (valreg));
3bdf5ad1 3225 set_mem_attributes (target, exp, 1);
cacbd532 3226 }
0a1c58a2
JL
3227 /* Handle calls that return values in multiple non-contiguous locations.
3228 The Irix 6 ABI has examples of this. */
3229 else if (GET_CODE (valreg) == PARALLEL)
3230 {
3231 int bytes = int_size_in_bytes (TREE_TYPE (exp));
cacbd532 3232
0a1c58a2
JL
3233 if (target == 0)
3234 {
3235 target = assign_stack_temp (TYPE_MODE (TREE_TYPE (exp)),
3236 bytes, 0);
3237 MEM_SET_IN_STRUCT_P (target, AGGREGATE_TYPE_P (TREE_TYPE (exp)));
3238 preserve_temp_slots (target);
3239 }
3240
3241 if (! rtx_equal_p (target, valreg))
3242 emit_group_store (target, valreg, bytes,
19caa751
RK
3243 TYPE_ALIGN (TREE_TYPE (exp)));
3244
0a1c58a2
JL
3245 /* We can not support sibling calls for this case. */
3246 sibcall_failure = 1;
3247 }
3248 else if (target
3249 && GET_MODE (target) == TYPE_MODE (TREE_TYPE (exp))
3250 && GET_MODE (target) == GET_MODE (valreg))
3251 {
3252 /* TARGET and VALREG cannot be equal at this point because the
3253 latter would not have REG_FUNCTION_VALUE_P true, while the
3254 former would if it were referring to the same register.
3255
3256 If they refer to the same register, this move will be a no-op,
3257 except when function inlining is being done. */
3258 emit_move_insn (target, valreg);
3259 }
3260 else if (TYPE_MODE (TREE_TYPE (exp)) == BLKmode)
8eb99146
RH
3261 {
3262 target = copy_blkmode_from_reg (target, valreg, TREE_TYPE (exp));
3263
3264 /* We can not support sibling calls for this case. */
3265 sibcall_failure = 1;
3266 }
0a1c58a2
JL
3267 else
3268 target = copy_to_reg (valreg);
51bbfa0c 3269
84b55618 3270#ifdef PROMOTE_FUNCTION_RETURN
0a1c58a2
JL
3271 /* If we promoted this return value, make the proper SUBREG. TARGET
3272 might be const0_rtx here, so be careful. */
3273 if (GET_CODE (target) == REG
3274 && TYPE_MODE (TREE_TYPE (exp)) != BLKmode
3275 && GET_MODE (target) != TYPE_MODE (TREE_TYPE (exp)))
3276 {
3277 tree type = TREE_TYPE (exp);
3278 int unsignedp = TREE_UNSIGNED (type);
84b55618 3279
0a1c58a2
JL
3280 /* If we don't promote as expected, something is wrong. */
3281 if (GET_MODE (target)
3282 != promote_mode (type, TYPE_MODE (type), &unsignedp, 1))
3283 abort ();
5d2ac65e 3284
0a1c58a2
JL
3285 target = gen_rtx_SUBREG (TYPE_MODE (type), target, 0);
3286 SUBREG_PROMOTED_VAR_P (target) = 1;
3287 SUBREG_PROMOTED_UNSIGNED_P (target) = unsignedp;
3288 }
84b55618
RK
3289#endif
3290
0a1c58a2
JL
3291 /* If size of args is variable or this was a constructor call for a stack
3292 argument, restore saved stack-pointer value. */
51bbfa0c 3293
7393c642 3294 if (old_stack_level && ! (flags & ECF_SP_DEPRESSED))
0a1c58a2
JL
3295 {
3296 emit_stack_restore (SAVE_BLOCK, old_stack_level, NULL_RTX);
3297 pending_stack_adjust = old_pending_adj;
0a1c58a2
JL
3298 stack_arg_under_construction = old_stack_arg_under_construction;
3299 highest_outgoing_arg_in_use = initial_highest_arg_in_use;
3300 stack_usage_map = initial_stack_usage_map;
0a1c58a2
JL
3301 sibcall_failure = 1;
3302 }
f8a097cd 3303 else if (ACCUMULATE_OUTGOING_ARGS && pass)
0a1c58a2 3304 {
51bbfa0c 3305#ifdef REG_PARM_STACK_SPACE
0a1c58a2
JL
3306 if (save_area)
3307 {
3308 restore_fixed_argument_area (save_area, argblock,
3309 high_to_save, low_to_save);
0a1c58a2 3310 }
b94301c2 3311#endif
51bbfa0c 3312
0a1c58a2
JL
3313 /* If we saved any argument areas, restore them. */
3314 for (i = 0; i < num_actuals; i++)
3315 if (args[i].save_area)
3316 {
3317 enum machine_mode save_mode = GET_MODE (args[i].save_area);
3318 rtx stack_area
3319 = gen_rtx_MEM (save_mode,
3320 memory_address (save_mode,
3321 XEXP (args[i].stack_slot, 0)));
3322
3323 if (save_mode != BLKmode)
3324 emit_move_insn (stack_area, args[i].save_area);
3325 else
3326 emit_block_move (stack_area,
3327 validize_mem (args[i].save_area),
3328 GEN_INT (args[i].size.constant),
19caa751 3329 PARM_BOUNDARY);
0a1c58a2 3330 }
51bbfa0c 3331
0a1c58a2
JL
3332 highest_outgoing_arg_in_use = initial_highest_arg_in_use;
3333 stack_usage_map = initial_stack_usage_map;
3334 }
51bbfa0c 3335
f725a3ec 3336 /* If this was alloca, record the new stack level for nonlocal gotos.
0a1c58a2
JL
3337 Check for the handler slots since we might not have a save area
3338 for non-local gotos. */
59257ff7 3339
f2d33f13 3340 if ((flags & ECF_MAY_BE_ALLOCA) && nonlocal_goto_handler_slots != 0)
0a1c58a2 3341 emit_stack_save (SAVE_NONLOCAL, &nonlocal_goto_stack_level, NULL_RTX);
51bbfa0c 3342
0a1c58a2
JL
3343 pop_temp_slots ();
3344
3345 /* Free up storage we no longer need. */
3346 for (i = 0; i < num_actuals; ++i)
3347 if (args[i].aligned_regs)
3348 free (args[i].aligned_regs);
3349
e245d3af
RH
3350 if (pass == 0)
3351 {
3352 /* Undo the fake expand_start_target_temps we did earlier. If
3353 there had been any cleanups created, we've already set
3354 sibcall_failure. */
3355 expand_end_target_temps ();
3356 }
3357
0a1c58a2
JL
3358 insns = get_insns ();
3359 end_sequence ();
3360
3361 if (pass == 0)
3362 {
3363 tail_call_insns = insns;
3364
0a1c58a2
JL
3365 /* Restore the pending stack adjustment now that we have
3366 finished generating the sibling call sequence. */
1503a7ec 3367
0a1c58a2 3368 pending_stack_adjust = save_pending_stack_adjust;
1503a7ec 3369 stack_pointer_delta = save_stack_pointer_delta;
099e9712
JH
3370
3371 /* Prepare arg structure for next iteration. */
f725a3ec 3372 for (i = 0; i < num_actuals; i++)
099e9712
JH
3373 {
3374 args[i].value = 0;
3375 args[i].aligned_regs = 0;
3376 args[i].stack = 0;
3377 }
c67846f2
JJ
3378
3379 sbitmap_free (stored_args_map);
0a1c58a2
JL
3380 }
3381 else
3382 normal_call_insns = insns;
fadb729c
JJ
3383
3384 /* If something prevents making this a sibling call,
3385 zero out the sequence. */
3386 if (sibcall_failure)
3387 tail_call_insns = NULL_RTX;
0a1c58a2
JL
3388 }
3389
3390 /* The function optimize_sibling_and_tail_recursive_calls doesn't
3391 handle CALL_PLACEHOLDERs inside other CALL_PLACEHOLDERs. This
3392 can happen if the arguments to this function call an inline
3393 function who's expansion contains another CALL_PLACEHOLDER.
3394
3395 If there are any C_Ps in any of these sequences, replace them
f725a3ec 3396 with their normal call. */
0a1c58a2
JL
3397
3398 for (insn = normal_call_insns; insn; insn = NEXT_INSN (insn))
3399 if (GET_CODE (insn) == CALL_INSN
3400 && GET_CODE (PATTERN (insn)) == CALL_PLACEHOLDER)
3401 replace_call_placeholder (insn, sibcall_use_normal);
3402
3403 for (insn = tail_call_insns; insn; insn = NEXT_INSN (insn))
3404 if (GET_CODE (insn) == CALL_INSN
3405 && GET_CODE (PATTERN (insn)) == CALL_PLACEHOLDER)
3406 replace_call_placeholder (insn, sibcall_use_normal);
3407
3408 for (insn = tail_recursion_insns; insn; insn = NEXT_INSN (insn))
3409 if (GET_CODE (insn) == CALL_INSN
3410 && GET_CODE (PATTERN (insn)) == CALL_PLACEHOLDER)
3411 replace_call_placeholder (insn, sibcall_use_normal);
3412
3413 /* If this was a potential tail recursion site, then emit a
3414 CALL_PLACEHOLDER with the normal and the tail recursion streams.
3415 One of them will be selected later. */
3416 if (tail_recursion_insns || tail_call_insns)
3417 {
3418 /* The tail recursion label must be kept around. We could expose
3419 its use in the CALL_PLACEHOLDER, but that creates unwanted edges
3420 and makes determining true tail recursion sites difficult.
3421
3422 So we set LABEL_PRESERVE_P here, then clear it when we select
3423 one of the call sequences after rtl generation is complete. */
3424 if (tail_recursion_insns)
3425 LABEL_PRESERVE_P (tail_recursion_label) = 1;
3426 emit_call_insn (gen_rtx_CALL_PLACEHOLDER (VOIDmode, normal_call_insns,
3427 tail_call_insns,
3428 tail_recursion_insns,
3429 tail_recursion_label));
3430 }
3431 else
3432 emit_insns (normal_call_insns);
51bbfa0c 3433
0a1c58a2 3434 currently_expanding_call--;
8e6a59fe 3435
7393c642
RK
3436 /* If this function returns with the stack pointer depressed, ensure
3437 this block saves and restores the stack pointer, show it was
3438 changed, and adjust for any outgoing arg space. */
3439 if (flags & ECF_SP_DEPRESSED)
3440 {
3441 clear_pending_stack_adjust ();
3442 emit_insn (gen_rtx (CLOBBER, VOIDmode, stack_pointer_rtx));
3443 emit_move_insn (virtual_stack_dynamic_rtx, stack_pointer_rtx);
3444 save_stack_pointer ();
3445 }
3446
51bbfa0c
RS
3447 return target;
3448}
3449\f
12a22e76
JM
3450/* Returns nonzero if FUN is the symbol for a library function which can
3451 not throw. */
3452
3453static int
3454libfunc_nothrow (fun)
3455 rtx fun;
3456{
3457 if (fun == throw_libfunc
3458 || fun == rethrow_libfunc
3459 || fun == sjthrow_libfunc
3460 || fun == sjpopnthrow_libfunc)
3461 return 0;
3462
3463 return 1;
3464}
43bc5f13 3465\f
de76b467 3466/* Output a library call to function FUN (a SYMBOL_REF rtx).
f725a3ec 3467 The RETVAL parameter specifies whether return value needs to be saved, other
de76b467
JH
3468 parameters are documented in the emit_library_call function bellow. */
3469static rtx
2a8f6b90 3470emit_library_call_value_1 (retval, orgfun, value, fn_type, outmode, nargs, p)
de76b467
JH
3471 int retval;
3472 rtx orgfun;
3473 rtx value;
ebb1b59a 3474 enum libcall_type fn_type;
de76b467
JH
3475 enum machine_mode outmode;
3476 int nargs;
3477 va_list p;
43bc5f13 3478{
3c0fca12
RH
3479 /* Total size in bytes of all the stack-parms scanned so far. */
3480 struct args_size args_size;
3481 /* Size of arguments before any adjustments (such as rounding). */
3482 struct args_size original_args_size;
3483 register int argnum;
3484 rtx fun;
3485 int inc;
3486 int count;
3487 struct args_size alignment_pad;
3488 rtx argblock = 0;
3489 CUMULATIVE_ARGS args_so_far;
f725a3ec
KH
3490 struct arg
3491 {
3492 rtx value;
3493 enum machine_mode mode;
3494 rtx reg;
3495 int partial;
3496 struct args_size offset;
3497 struct args_size size;
3498 rtx save_area;
3499 };
3c0fca12
RH
3500 struct arg *argvec;
3501 int old_inhibit_defer_pop = inhibit_defer_pop;
3502 rtx call_fusage = 0;
3503 rtx mem_value = 0;
5591ee6f 3504 rtx valreg;
3c0fca12
RH
3505 int pcc_struct_value = 0;
3506 int struct_value_size = 0;
f2d33f13 3507 int flags = 0;
3c0fca12 3508 int reg_parm_stack_space = 0;
3c0fca12 3509 int needed;
3c0fca12 3510
f73ad30e 3511#ifdef REG_PARM_STACK_SPACE
3c0fca12
RH
3512 /* Define the boundary of the register parm stack space that needs to be
3513 save, if any. */
3514 int low_to_save = -1, high_to_save = 0;
f725a3ec 3515 rtx save_area = 0; /* Place that it is saved. */
3c0fca12
RH
3516#endif
3517
3c0fca12
RH
3518 /* Size of the stack reserved for parameter registers. */
3519 int initial_highest_arg_in_use = highest_outgoing_arg_in_use;
3520 char *initial_stack_usage_map = stack_usage_map;
3c0fca12
RH
3521
3522#ifdef REG_PARM_STACK_SPACE
3523#ifdef MAYBE_REG_PARM_STACK_SPACE
3524 reg_parm_stack_space = MAYBE_REG_PARM_STACK_SPACE;
3525#else
3526 reg_parm_stack_space = REG_PARM_STACK_SPACE ((tree) 0);
3527#endif
3528#endif
3529
ebb1b59a 3530 if (fn_type == LCT_CONST_MAKE_BLOCK)
f2d33f13 3531 flags |= ECF_CONST;
ebb1b59a 3532 else if (fn_type == LCT_PURE_MAKE_BLOCK)
2a8f6b90 3533 flags |= ECF_PURE;
3c0fca12
RH
3534 fun = orgfun;
3535
f2d33f13
JH
3536 if (libfunc_nothrow (fun))
3537 flags |= ECF_NOTHROW;
3c0fca12
RH
3538
3539#ifdef PREFERRED_STACK_BOUNDARY
3540 /* Ensure current function's preferred stack boundary is at least
3541 what we need. */
3542 if (cfun->preferred_stack_boundary < PREFERRED_STACK_BOUNDARY)
3543 cfun->preferred_stack_boundary = PREFERRED_STACK_BOUNDARY;
3544#endif
3545
3546 /* If this kind of value comes back in memory,
3547 decide where in memory it should come back. */
de76b467 3548 if (outmode != VOIDmode && aggregate_value_p (type_for_mode (outmode, 0)))
3c0fca12
RH
3549 {
3550#ifdef PCC_STATIC_STRUCT_RETURN
3551 rtx pointer_reg
3552 = hard_function_value (build_pointer_type (type_for_mode (outmode, 0)),
3553 0, 0);
3554 mem_value = gen_rtx_MEM (outmode, pointer_reg);
3555 pcc_struct_value = 1;
3556 if (value == 0)
3557 value = gen_reg_rtx (outmode);
3558#else /* not PCC_STATIC_STRUCT_RETURN */
3559 struct_value_size = GET_MODE_SIZE (outmode);
3560 if (value != 0 && GET_CODE (value) == MEM)
3561 mem_value = value;
3562 else
3563 mem_value = assign_stack_temp (outmode, GET_MODE_SIZE (outmode), 0);
3564#endif
3565
3566 /* This call returns a big structure. */
2a8f6b90 3567 flags &= ~(ECF_CONST | ECF_PURE);
3c0fca12
RH
3568 }
3569
3570 /* ??? Unfinished: must pass the memory address as an argument. */
3571
3572 /* Copy all the libcall-arguments out of the varargs data
3573 and into a vector ARGVEC.
3574
3575 Compute how to pass each argument. We only support a very small subset
3576 of the full argument passing conventions to limit complexity here since
3577 library functions shouldn't have many args. */
3578
3579 argvec = (struct arg *) alloca ((nargs + 1) * sizeof (struct arg));
3580 bzero ((char *) argvec, (nargs + 1) * sizeof (struct arg));
3581
3582 INIT_CUMULATIVE_ARGS (args_so_far, NULL_TREE, fun, 0);
3583
3584 args_size.constant = 0;
3585 args_size.var = 0;
3586
3587 count = 0;
3588
ebb1b59a
BS
3589 /* Now we are about to start emitting insns that can be deleted
3590 if a libcall is deleted. */
3591 if (flags & (ECF_CONST | ECF_PURE))
3592 start_sequence ();
3593
3c0fca12
RH
3594 push_temp_slots ();
3595
3596 /* If there's a structure value address to be passed,
3597 either pass it in the special place, or pass it as an extra argument. */
3598 if (mem_value && struct_value_rtx == 0 && ! pcc_struct_value)
3599 {
3600 rtx addr = XEXP (mem_value, 0);
3601 nargs++;
3602
3603 /* Make sure it is a reasonable operand for a move or push insn. */
3604 if (GET_CODE (addr) != REG && GET_CODE (addr) != MEM
3605 && ! (CONSTANT_P (addr) && LEGITIMATE_CONSTANT_P (addr)))
3606 addr = force_operand (addr, NULL_RTX);
3607
3608 argvec[count].value = addr;
3609 argvec[count].mode = Pmode;
3610 argvec[count].partial = 0;
3611
3612 argvec[count].reg = FUNCTION_ARG (args_so_far, Pmode, NULL_TREE, 1);
3613#ifdef FUNCTION_ARG_PARTIAL_NREGS
3614 if (FUNCTION_ARG_PARTIAL_NREGS (args_so_far, Pmode, NULL_TREE, 1))
3615 abort ();
3616#endif
3617
3618 locate_and_pad_parm (Pmode, NULL_TREE,
a4d5044f
CM
3619#ifdef STACK_PARMS_IN_REG_PARM_AREA
3620 1,
3621#else
3622 argvec[count].reg != 0,
3623#endif
3c0fca12
RH
3624 NULL_TREE, &args_size, &argvec[count].offset,
3625 &argvec[count].size, &alignment_pad);
3626
3c0fca12
RH
3627 if (argvec[count].reg == 0 || argvec[count].partial != 0
3628 || reg_parm_stack_space > 0)
3629 args_size.constant += argvec[count].size.constant;
3630
3631 FUNCTION_ARG_ADVANCE (args_so_far, Pmode, (tree) 0, 1);
3632
3633 count++;
3634 }
3635
3636 for (; count < nargs; count++)
3637 {
3638 rtx val = va_arg (p, rtx);
3639 enum machine_mode mode = va_arg (p, enum machine_mode);
3640
3641 /* We cannot convert the arg value to the mode the library wants here;
3642 must do it earlier where we know the signedness of the arg. */
3643 if (mode == BLKmode
3644 || (GET_MODE (val) != mode && GET_MODE (val) != VOIDmode))
3645 abort ();
3646
3647 /* On some machines, there's no way to pass a float to a library fcn.
3648 Pass it as a double instead. */
3649#ifdef LIBGCC_NEEDS_DOUBLE
3650 if (LIBGCC_NEEDS_DOUBLE && mode == SFmode)
3651 val = convert_modes (DFmode, SFmode, val, 0), mode = DFmode;
3652#endif
3653
3654 /* There's no need to call protect_from_queue, because
3655 either emit_move_insn or emit_push_insn will do that. */
3656
3657 /* Make sure it is a reasonable operand for a move or push insn. */
3658 if (GET_CODE (val) != REG && GET_CODE (val) != MEM
3659 && ! (CONSTANT_P (val) && LEGITIMATE_CONSTANT_P (val)))
3660 val = force_operand (val, NULL_RTX);
3661
3662#ifdef FUNCTION_ARG_PASS_BY_REFERENCE
3663 if (FUNCTION_ARG_PASS_BY_REFERENCE (args_so_far, mode, NULL_TREE, 1))
3664 {
3665 /* We do not support FUNCTION_ARG_CALLEE_COPIES here since it can
3666 be viewed as just an efficiency improvement. */
3667 rtx slot = assign_stack_temp (mode, GET_MODE_SIZE (mode), 0);
3668 emit_move_insn (slot, val);
de76b467 3669 val = force_operand (XEXP (slot, 0), NULL_RTX);
3c0fca12
RH
3670 mode = Pmode;
3671 }
3672#endif
3673
3674 argvec[count].value = val;
3675 argvec[count].mode = mode;
3676
3677 argvec[count].reg = FUNCTION_ARG (args_so_far, mode, NULL_TREE, 1);
3678
3679#ifdef FUNCTION_ARG_PARTIAL_NREGS
3680 argvec[count].partial
3681 = FUNCTION_ARG_PARTIAL_NREGS (args_so_far, mode, NULL_TREE, 1);
3682#else
3683 argvec[count].partial = 0;
3684#endif
3685
3686 locate_and_pad_parm (mode, NULL_TREE,
a4d5044f 3687#ifdef STACK_PARMS_IN_REG_PARM_AREA
f725a3ec 3688 1,
a4d5044f
CM
3689#else
3690 argvec[count].reg != 0,
3691#endif
3c0fca12
RH
3692 NULL_TREE, &args_size, &argvec[count].offset,
3693 &argvec[count].size, &alignment_pad);
3694
3695 if (argvec[count].size.var)
3696 abort ();
3697
3698 if (reg_parm_stack_space == 0 && argvec[count].partial)
3699 argvec[count].size.constant -= argvec[count].partial * UNITS_PER_WORD;
3700
3701 if (argvec[count].reg == 0 || argvec[count].partial != 0
3702 || reg_parm_stack_space > 0)
3703 args_size.constant += argvec[count].size.constant;
3704
3705 FUNCTION_ARG_ADVANCE (args_so_far, mode, (tree) 0, 1);
3706 }
3c0fca12
RH
3707
3708#ifdef FINAL_REG_PARM_STACK_SPACE
3709 reg_parm_stack_space = FINAL_REG_PARM_STACK_SPACE (args_size.constant,
3710 args_size.var);
3711#endif
3712 /* If this machine requires an external definition for library
3713 functions, write one out. */
3714 assemble_external_libcall (fun);
3715
3716 original_args_size = args_size;
3717#ifdef PREFERRED_STACK_BOUNDARY
1503a7ec
JH
3718 args_size.constant = (((args_size.constant
3719 + stack_pointer_delta
3720 + STACK_BYTES - 1)
3721 / STACK_BYTES
3722 * STACK_BYTES)
3723 - stack_pointer_delta);
3c0fca12
RH
3724#endif
3725
3726 args_size.constant = MAX (args_size.constant,
3727 reg_parm_stack_space);
3728
3729#ifndef OUTGOING_REG_PARM_STACK_SPACE
3730 args_size.constant -= reg_parm_stack_space;
3731#endif
3732
3733 if (args_size.constant > current_function_outgoing_args_size)
3734 current_function_outgoing_args_size = args_size.constant;
3735
f73ad30e
JH
3736 if (ACCUMULATE_OUTGOING_ARGS)
3737 {
3738 /* Since the stack pointer will never be pushed, it is possible for
3739 the evaluation of a parm to clobber something we have already
3740 written to the stack. Since most function calls on RISC machines
3741 do not use the stack, this is uncommon, but must work correctly.
3c0fca12 3742
f73ad30e
JH
3743 Therefore, we save any area of the stack that was already written
3744 and that we are using. Here we set up to do this by making a new
3745 stack usage map from the old one.
3c0fca12 3746
f73ad30e
JH
3747 Another approach might be to try to reorder the argument
3748 evaluations to avoid this conflicting stack usage. */
3c0fca12 3749
f73ad30e 3750 needed = args_size.constant;
3c0fca12
RH
3751
3752#ifndef OUTGOING_REG_PARM_STACK_SPACE
f73ad30e
JH
3753 /* Since we will be writing into the entire argument area, the
3754 map must be allocated for its entire size, not just the part that
3755 is the responsibility of the caller. */
3756 needed += reg_parm_stack_space;
3c0fca12
RH
3757#endif
3758
3759#ifdef ARGS_GROW_DOWNWARD
f73ad30e
JH
3760 highest_outgoing_arg_in_use = MAX (initial_highest_arg_in_use,
3761 needed + 1);
3c0fca12 3762#else
f73ad30e
JH
3763 highest_outgoing_arg_in_use = MAX (initial_highest_arg_in_use,
3764 needed);
3c0fca12 3765#endif
f73ad30e 3766 stack_usage_map = (char *) alloca (highest_outgoing_arg_in_use);
3c0fca12 3767
f73ad30e
JH
3768 if (initial_highest_arg_in_use)
3769 bcopy (initial_stack_usage_map, stack_usage_map,
3770 initial_highest_arg_in_use);
3c0fca12 3771
f73ad30e
JH
3772 if (initial_highest_arg_in_use != highest_outgoing_arg_in_use)
3773 bzero (&stack_usage_map[initial_highest_arg_in_use],
3774 highest_outgoing_arg_in_use - initial_highest_arg_in_use);
3775 needed = 0;
3c0fca12 3776
f73ad30e
JH
3777 /* The address of the outgoing argument list must not be copied to a
3778 register here, because argblock would be left pointing to the
f725a3ec 3779 wrong place after the call to allocate_dynamic_stack_space below. */
3c0fca12 3780
f73ad30e
JH
3781 argblock = virtual_outgoing_args_rtx;
3782 }
3783 else
3784 {
3785 if (!PUSH_ARGS)
3786 argblock = push_block (GEN_INT (args_size.constant), 0, 0);
3787 }
3c0fca12 3788
3c0fca12
RH
3789#ifdef PREFERRED_STACK_BOUNDARY
3790 /* If we push args individually in reverse order, perform stack alignment
3791 before the first push (the last arg). */
f73ad30e 3792 if (argblock == 0 && PUSH_ARGS_REVERSED)
3c0fca12
RH
3793 anti_adjust_stack (GEN_INT (args_size.constant
3794 - original_args_size.constant));
3795#endif
3c0fca12 3796
f73ad30e
JH
3797 if (PUSH_ARGS_REVERSED)
3798 {
3799 inc = -1;
3800 argnum = nargs - 1;
3801 }
3802 else
3803 {
3804 inc = 1;
3805 argnum = 0;
3806 }
3c0fca12 3807
f73ad30e
JH
3808#ifdef REG_PARM_STACK_SPACE
3809 if (ACCUMULATE_OUTGOING_ARGS)
3810 {
3811 /* The argument list is the property of the called routine and it
3812 may clobber it. If the fixed area has been used for previous
3813 parameters, we must save and restore it.
3c0fca12 3814
f73ad30e 3815 Here we compute the boundary of the that needs to be saved, if any. */
3c0fca12
RH
3816
3817#ifdef ARGS_GROW_DOWNWARD
f73ad30e 3818 for (count = 0; count < reg_parm_stack_space + 1; count++)
3c0fca12 3819#else
f73ad30e 3820 for (count = 0; count < reg_parm_stack_space; count++)
3c0fca12 3821#endif
f73ad30e 3822 {
f725a3ec 3823 if (count >= highest_outgoing_arg_in_use
f73ad30e
JH
3824 || stack_usage_map[count] == 0)
3825 continue;
3c0fca12 3826
f73ad30e
JH
3827 if (low_to_save == -1)
3828 low_to_save = count;
3c0fca12 3829
f73ad30e
JH
3830 high_to_save = count;
3831 }
3c0fca12 3832
f73ad30e
JH
3833 if (low_to_save >= 0)
3834 {
3835 int num_to_save = high_to_save - low_to_save + 1;
3836 enum machine_mode save_mode
3837 = mode_for_size (num_to_save * BITS_PER_UNIT, MODE_INT, 1);
3838 rtx stack_area;
3c0fca12 3839
f73ad30e
JH
3840 /* If we don't have the required alignment, must do this in BLKmode. */
3841 if ((low_to_save & (MIN (GET_MODE_SIZE (save_mode),
3842 BIGGEST_ALIGNMENT / UNITS_PER_WORD) - 1)))
3843 save_mode = BLKmode;
3c0fca12
RH
3844
3845#ifdef ARGS_GROW_DOWNWARD
f73ad30e
JH
3846 stack_area = gen_rtx_MEM (save_mode,
3847 memory_address (save_mode,
3848 plus_constant (argblock,
f725a3ec 3849 -high_to_save)));
3c0fca12 3850#else
f73ad30e
JH
3851 stack_area = gen_rtx_MEM (save_mode,
3852 memory_address (save_mode,
3853 plus_constant (argblock,
3854 low_to_save)));
3c0fca12 3855#endif
f73ad30e
JH
3856 if (save_mode == BLKmode)
3857 {
3858 save_area = assign_stack_temp (BLKmode, num_to_save, 0);
3859 emit_block_move (validize_mem (save_area), stack_area,
19caa751 3860 GEN_INT (num_to_save), PARM_BOUNDARY);
f73ad30e
JH
3861 }
3862 else
3863 {
3864 save_area = gen_reg_rtx (save_mode);
3865 emit_move_insn (save_area, stack_area);
3866 }
3c0fca12
RH
3867 }
3868 }
3869#endif
f725a3ec 3870
3c0fca12
RH
3871 /* Push the args that need to be pushed. */
3872
3873 /* ARGNUM indexes the ARGVEC array in the order in which the arguments
3874 are to be pushed. */
3875 for (count = 0; count < nargs; count++, argnum += inc)
3876 {
3877 register enum machine_mode mode = argvec[argnum].mode;
3878 register rtx val = argvec[argnum].value;
3879 rtx reg = argvec[argnum].reg;
3880 int partial = argvec[argnum].partial;
f73ad30e 3881 int lower_bound = 0, upper_bound = 0, i;
3c0fca12
RH
3882
3883 if (! (reg != 0 && partial == 0))
3884 {
f73ad30e
JH
3885 if (ACCUMULATE_OUTGOING_ARGS)
3886 {
f8a097cd
JH
3887 /* If this is being stored into a pre-allocated, fixed-size,
3888 stack area, save any previous data at that location. */
3c0fca12
RH
3889
3890#ifdef ARGS_GROW_DOWNWARD
f73ad30e
JH
3891 /* stack_slot is negative, but we want to index stack_usage_map
3892 with positive values. */
3893 upper_bound = -argvec[argnum].offset.constant + 1;
3894 lower_bound = upper_bound - argvec[argnum].size.constant;
3c0fca12 3895#else
f73ad30e
JH
3896 lower_bound = argvec[argnum].offset.constant;
3897 upper_bound = lower_bound + argvec[argnum].size.constant;
3c0fca12
RH
3898#endif
3899
f73ad30e
JH
3900 for (i = lower_bound; i < upper_bound; i++)
3901 if (stack_usage_map[i]
f8a097cd
JH
3902 /* Don't store things in the fixed argument area at this
3903 point; it has already been saved. */
f73ad30e
JH
3904 && i > reg_parm_stack_space)
3905 break;
3c0fca12 3906
f73ad30e
JH
3907 if (i != upper_bound)
3908 {
f8a097cd 3909 /* We need to make a save area. See what mode we can make
f725a3ec 3910 it. */
f73ad30e 3911 enum machine_mode save_mode
f8a097cd
JH
3912 = mode_for_size (argvec[argnum].size.constant
3913 * BITS_PER_UNIT,
f73ad30e
JH
3914 MODE_INT, 1);
3915 rtx stack_area
3916 = gen_rtx_MEM
3917 (save_mode,
3918 memory_address
3919 (save_mode,
3920 plus_constant (argblock,
3921 argvec[argnum].offset.constant)));
3922 argvec[argnum].save_area = gen_reg_rtx (save_mode);
3923
3924 emit_move_insn (argvec[argnum].save_area, stack_area);
3925 }
3c0fca12 3926 }
19caa751 3927
3c0fca12
RH
3928 emit_push_insn (val, mode, NULL_TREE, NULL_RTX, 0, partial, reg, 0,
3929 argblock, GEN_INT (argvec[argnum].offset.constant),
3930 reg_parm_stack_space, ARGS_SIZE_RTX (alignment_pad));
3931
3c0fca12 3932 /* Now mark the segment we just used. */
f73ad30e
JH
3933 if (ACCUMULATE_OUTGOING_ARGS)
3934 for (i = lower_bound; i < upper_bound; i++)
3935 stack_usage_map[i] = 1;
3c0fca12
RH
3936
3937 NO_DEFER_POP;
3938 }
3939 }
3940
3c0fca12
RH
3941#ifdef PREFERRED_STACK_BOUNDARY
3942 /* If we pushed args in forward order, perform stack alignment
3943 after pushing the last arg. */
f73ad30e 3944 if (argblock == 0 && !PUSH_ARGS_REVERSED)
3c0fca12
RH
3945 anti_adjust_stack (GEN_INT (args_size.constant
3946 - original_args_size.constant));
3947#endif
3c0fca12 3948
f73ad30e
JH
3949 if (PUSH_ARGS_REVERSED)
3950 argnum = nargs - 1;
3951 else
3952 argnum = 0;
3c0fca12
RH
3953
3954 fun = prepare_call_address (fun, NULL_TREE, &call_fusage, 0);
3955
3956 /* Now load any reg parms into their regs. */
3957
3958 /* ARGNUM indexes the ARGVEC array in the order in which the arguments
3959 are to be pushed. */
3960 for (count = 0; count < nargs; count++, argnum += inc)
3961 {
3962 register rtx val = argvec[argnum].value;
3963 rtx reg = argvec[argnum].reg;
3964 int partial = argvec[argnum].partial;
3965
3966 /* Handle calls that pass values in multiple non-contiguous
3967 locations. The PA64 has examples of this for library calls. */
3968 if (reg != 0 && GET_CODE (reg) == PARALLEL)
3969 emit_group_load (reg, val,
3970 GET_MODE_SIZE (GET_MODE (val)),
3971 GET_MODE_ALIGNMENT (GET_MODE (val)));
3972 else if (reg != 0 && partial == 0)
3973 emit_move_insn (reg, val);
3974
3975 NO_DEFER_POP;
3976 }
3977
3c0fca12
RH
3978 /* Any regs containing parms remain in use through the call. */
3979 for (count = 0; count < nargs; count++)
3980 {
3981 rtx reg = argvec[count].reg;
3982 if (reg != 0 && GET_CODE (reg) == PARALLEL)
3983 use_group_regs (&call_fusage, reg);
3984 else if (reg != 0)
3985 use_reg (&call_fusage, reg);
3986 }
3987
3988 /* Pass the function the address in which to return a structure value. */
3989 if (mem_value != 0 && struct_value_rtx != 0 && ! pcc_struct_value)
3990 {
3991 emit_move_insn (struct_value_rtx,
3992 force_reg (Pmode,
3993 force_operand (XEXP (mem_value, 0),
3994 NULL_RTX)));
3995 if (GET_CODE (struct_value_rtx) == REG)
f725a3ec 3996 use_reg (&call_fusage, struct_value_rtx);
3c0fca12
RH
3997 }
3998
3999 /* Don't allow popping to be deferred, since then
4000 cse'ing of library calls could delete a call and leave the pop. */
4001 NO_DEFER_POP;
5591ee6f
JH
4002 valreg = (mem_value == 0 && outmode != VOIDmode
4003 ? hard_libcall_value (outmode) : NULL_RTX);
3c0fca12 4004
ebcd0b57 4005#ifdef PREFERRED_STACK_BOUNDARY
ce48579b 4006 /* Stack must be properly aligned now. */
ebcd0b57 4007 if (stack_pointer_delta & (PREFERRED_STACK_BOUNDARY / BITS_PER_UNIT - 1))
f725a3ec 4008 abort ();
ebcd0b57
JH
4009#endif
4010
3c0fca12
RH
4011 /* We pass the old value of inhibit_defer_pop + 1 to emit_call_1, which
4012 will set inhibit_defer_pop to that value. */
de76b467
JH
4013 /* The return type is needed to decide how many bytes the function pops.
4014 Signedness plays no role in that, so for simplicity, we pretend it's
4015 always signed. We also assume that the list of arguments passed has
4016 no impact, so we pretend it is unknown. */
3c0fca12 4017
f725a3ec
KH
4018 emit_call_1 (fun,
4019 get_identifier (XSTR (orgfun, 0)),
de76b467
JH
4020 build_function_type (outmode == VOIDmode ? void_type_node
4021 : type_for_mode (outmode, 0), NULL_TREE),
f725a3ec 4022 original_args_size.constant, args_size.constant,
3c0fca12
RH
4023 struct_value_size,
4024 FUNCTION_ARG (args_so_far, VOIDmode, void_type_node, 1),
5591ee6f 4025 valreg,
f2d33f13 4026 old_inhibit_defer_pop + 1, call_fusage, flags);
3c0fca12
RH
4027
4028 /* Now restore inhibit_defer_pop to its actual original value. */
4029 OK_DEFER_POP;
4030
ebb1b59a
BS
4031 /* If call is cse'able, make appropriate pair of reg-notes around it.
4032 Test valreg so we don't crash; may safely ignore `const'
4033 if return type is void. Disable for PARALLEL return values, because
4034 we have no way to move such values into a pseudo register. */
4035 if ((flags & (ECF_CONST | ECF_PURE))
4036 && valreg != 0 && GET_CODE (valreg) != PARALLEL)
4037 {
4038 rtx note = 0;
4039 rtx temp = gen_reg_rtx (GET_MODE (valreg));
4040 rtx insns;
4041 int i;
4042
4043 /* Construct an "equal form" for the value which mentions all the
4044 arguments in order as well as the function name. */
4045 for (i = 0; i < nargs; i++)
4046 note = gen_rtx_EXPR_LIST (VOIDmode, argvec[i].value, note);
4047 note = gen_rtx_EXPR_LIST (VOIDmode, fun, note);
4048
4049 insns = get_insns ();
4050 end_sequence ();
4051
4052 if (flags & ECF_PURE)
4053 note = gen_rtx_EXPR_LIST (VOIDmode,
4054 gen_rtx_USE (VOIDmode,
4055 gen_rtx_MEM (BLKmode,
4056 gen_rtx_SCRATCH (VOIDmode))), note);
4057
4058 emit_libcall_block (insns, temp, valreg, note);
4059
4060 valreg = temp;
4061 }
4062 else if (flags & (ECF_CONST | ECF_PURE))
4063 {
4064 /* Otherwise, just write out the sequence without a note. */
4065 rtx insns = get_insns ();
4066
4067 end_sequence ();
4068 emit_insns (insns);
4069 }
3c0fca12
RH
4070 pop_temp_slots ();
4071
4072 /* Copy the value to the right place. */
de76b467 4073 if (outmode != VOIDmode && retval)
3c0fca12
RH
4074 {
4075 if (mem_value)
4076 {
4077 if (value == 0)
4078 value = mem_value;
4079 if (value != mem_value)
4080 emit_move_insn (value, mem_value);
4081 }
4082 else if (value != 0)
d4c68376 4083 emit_move_insn (value, hard_libcall_value (outmode));
3c0fca12 4084 else
d4c68376 4085 value = hard_libcall_value (outmode);
3c0fca12
RH
4086 }
4087
f73ad30e 4088 if (ACCUMULATE_OUTGOING_ARGS)
3c0fca12 4089 {
f73ad30e
JH
4090#ifdef REG_PARM_STACK_SPACE
4091 if (save_area)
4092 {
4093 enum machine_mode save_mode = GET_MODE (save_area);
3c0fca12 4094#ifdef ARGS_GROW_DOWNWARD
f73ad30e
JH
4095 rtx stack_area
4096 = gen_rtx_MEM (save_mode,
4097 memory_address (save_mode,
4098 plus_constant (argblock,
4099 - high_to_save)));
3c0fca12 4100#else
f73ad30e
JH
4101 rtx stack_area
4102 = gen_rtx_MEM (save_mode,
4103 memory_address (save_mode,
4104 plus_constant (argblock, low_to_save)));
3c0fca12 4105#endif
f73ad30e
JH
4106 if (save_mode != BLKmode)
4107 emit_move_insn (stack_area, save_area);
4108 else
4109 emit_block_move (stack_area, validize_mem (save_area),
4110 GEN_INT (high_to_save - low_to_save + 1),
19caa751 4111 PARM_BOUNDARY);
f73ad30e 4112 }
3c0fca12 4113#endif
f725a3ec 4114
f73ad30e
JH
4115 /* If we saved any argument areas, restore them. */
4116 for (count = 0; count < nargs; count++)
4117 if (argvec[count].save_area)
4118 {
4119 enum machine_mode save_mode = GET_MODE (argvec[count].save_area);
4120 rtx stack_area
4121 = gen_rtx_MEM (save_mode,
4122 memory_address
4123 (save_mode,
4124 plus_constant (argblock,
4125 argvec[count].offset.constant)));
4126
4127 emit_move_insn (stack_area, argvec[count].save_area);
4128 }
3c0fca12 4129
f73ad30e
JH
4130 highest_outgoing_arg_in_use = initial_highest_arg_in_use;
4131 stack_usage_map = initial_stack_usage_map;
4132 }
43bc5f13 4133
de76b467
JH
4134 return value;
4135
4136}
4137\f
4138/* Output a library call to function FUN (a SYMBOL_REF rtx)
4139 (emitting the queue unless NO_QUEUE is nonzero),
4140 for a value of mode OUTMODE,
4141 with NARGS different arguments, passed as alternating rtx values
4142 and machine_modes to convert them to.
4143 The rtx values should have been passed through protect_from_queue already.
4144
2a8f6b90
JH
4145 FN_TYPE will is zero for `normal' calls, one for `const' calls, wich
4146 which will be enclosed in REG_LIBCALL/REG_RETVAL notes and two for `pure'
4147 calls, that are handled like `const' calls with extra
4148 (use (memory (scratch)). */
de76b467
JH
4149
4150void
ebb1b59a
BS
4151emit_library_call VPARAMS((rtx orgfun, enum libcall_type fn_type,
4152 enum machine_mode outmode, int nargs, ...))
de76b467
JH
4153{
4154#ifndef ANSI_PROTOTYPES
4155 rtx orgfun;
2a8f6b90 4156 int fn_type;
de76b467
JH
4157 enum machine_mode outmode;
4158 int nargs;
4159#endif
4160 va_list p;
4161
4162 VA_START (p, nargs);
4163
4164#ifndef ANSI_PROTOTYPES
4165 orgfun = va_arg (p, rtx);
2a8f6b90 4166 fn_type = va_arg (p, int);
de76b467
JH
4167 outmode = va_arg (p, enum machine_mode);
4168 nargs = va_arg (p, int);
4169#endif
4170
2a8f6b90 4171 emit_library_call_value_1 (0, orgfun, NULL_RTX, fn_type, outmode, nargs, p);
de76b467
JH
4172
4173 va_end (p);
4174}
4175\f
4176/* Like emit_library_call except that an extra argument, VALUE,
4177 comes second and says where to store the result.
4178 (If VALUE is zero, this function chooses a convenient way
4179 to return the value.
4180
4181 This function returns an rtx for where the value is to be found.
4182 If VALUE is nonzero, VALUE is returned. */
4183
4184rtx
ebb1b59a
BS
4185emit_library_call_value VPARAMS((rtx orgfun, rtx value,
4186 enum libcall_type fn_type,
de76b467
JH
4187 enum machine_mode outmode, int nargs, ...))
4188{
4189#ifndef ANSI_PROTOTYPES
4190 rtx orgfun;
4191 rtx value;
2a8f6b90 4192 int fn_type;
de76b467
JH
4193 enum machine_mode outmode;
4194 int nargs;
4195#endif
4196 va_list p;
4197
4198 VA_START (p, nargs);
4199
4200#ifndef ANSI_PROTOTYPES
4201 orgfun = va_arg (p, rtx);
4202 value = va_arg (p, rtx);
2a8f6b90 4203 fn_type = va_arg (p, int);
de76b467
JH
4204 outmode = va_arg (p, enum machine_mode);
4205 nargs = va_arg (p, int);
4206#endif
4207
2a8f6b90 4208 value = emit_library_call_value_1 (1, orgfun, value, fn_type, outmode, nargs, p);
de76b467
JH
4209
4210 va_end (p);
4211
fac0ad80 4212 return value;
322e3e34
RK
4213}
4214\f
51bbfa0c
RS
4215#if 0
4216/* Return an rtx which represents a suitable home on the stack
4217 given TYPE, the type of the argument looking for a home.
4218 This is called only for BLKmode arguments.
4219
4220 SIZE is the size needed for this target.
4221 ARGS_ADDR is the address of the bottom of the argument block for this call.
4222 OFFSET describes this parameter's offset into ARGS_ADDR. It is meaningless
4223 if this machine uses push insns. */
4224
4225static rtx
4226target_for_arg (type, size, args_addr, offset)
4227 tree type;
4228 rtx size;
4229 rtx args_addr;
4230 struct args_size offset;
4231{
4232 rtx target;
4233 rtx offset_rtx = ARGS_SIZE_RTX (offset);
4234
4235 /* We do not call memory_address if possible,
4236 because we want to address as close to the stack
4237 as possible. For non-variable sized arguments,
4238 this will be stack-pointer relative addressing. */
4239 if (GET_CODE (offset_rtx) == CONST_INT)
4240 target = plus_constant (args_addr, INTVAL (offset_rtx));
4241 else
4242 {
4243 /* I have no idea how to guarantee that this
4244 will work in the presence of register parameters. */
38a448ca 4245 target = gen_rtx_PLUS (Pmode, args_addr, offset_rtx);
51bbfa0c
RS
4246 target = memory_address (QImode, target);
4247 }
4248
38a448ca 4249 return gen_rtx_MEM (BLKmode, target);
51bbfa0c
RS
4250}
4251#endif
4252\f
4253/* Store a single argument for a function call
4254 into the register or memory area where it must be passed.
4255 *ARG describes the argument value and where to pass it.
4256
4257 ARGBLOCK is the address of the stack-block for all the arguments,
d45cf215 4258 or 0 on a machine where arguments are pushed individually.
51bbfa0c
RS
4259
4260 MAY_BE_ALLOCA nonzero says this could be a call to `alloca'
f725a3ec 4261 so must be careful about how the stack is used.
51bbfa0c
RS
4262
4263 VARIABLE_SIZE nonzero says that this was a variable-sized outgoing
4264 argument stack. This is used if ACCUMULATE_OUTGOING_ARGS to indicate
4265 that we need not worry about saving and restoring the stack.
4266
4c6b3b2a 4267 FNDECL is the declaration of the function we are calling.
f725a3ec 4268
4c6b3b2a
JJ
4269 Return non-zero if this arg should cause sibcall failure,
4270 zero otherwise. */
51bbfa0c 4271
4c6b3b2a 4272static int
f725a3ec 4273store_one_arg (arg, argblock, flags, variable_size, reg_parm_stack_space)
51bbfa0c
RS
4274 struct arg_data *arg;
4275 rtx argblock;
f8a097cd 4276 int flags;
0f9b3ea6 4277 int variable_size ATTRIBUTE_UNUSED;
6f90e075 4278 int reg_parm_stack_space;
51bbfa0c
RS
4279{
4280 register tree pval = arg->tree_value;
4281 rtx reg = 0;
4282 int partial = 0;
4283 int used = 0;
6a651371 4284 int i, lower_bound = 0, upper_bound = 0;
4c6b3b2a 4285 int sibcall_failure = 0;
51bbfa0c
RS
4286
4287 if (TREE_CODE (pval) == ERROR_MARK)
4c6b3b2a 4288 return 1;
51bbfa0c 4289
cc79451b
RK
4290 /* Push a new temporary level for any temporaries we make for
4291 this argument. */
4292 push_temp_slots ();
4293
f8a097cd 4294 if (ACCUMULATE_OUTGOING_ARGS && !(flags & ECF_SIBCALL))
51bbfa0c 4295 {
f73ad30e
JH
4296 /* If this is being stored into a pre-allocated, fixed-size, stack area,
4297 save any previous data at that location. */
4298 if (argblock && ! variable_size && arg->stack)
4299 {
51bbfa0c 4300#ifdef ARGS_GROW_DOWNWARD
f73ad30e
JH
4301 /* stack_slot is negative, but we want to index stack_usage_map
4302 with positive values. */
4303 if (GET_CODE (XEXP (arg->stack_slot, 0)) == PLUS)
4304 upper_bound = -INTVAL (XEXP (XEXP (arg->stack_slot, 0), 1)) + 1;
4305 else
4306 upper_bound = 0;
51bbfa0c 4307
f73ad30e 4308 lower_bound = upper_bound - arg->size.constant;
51bbfa0c 4309#else
f73ad30e
JH
4310 if (GET_CODE (XEXP (arg->stack_slot, 0)) == PLUS)
4311 lower_bound = INTVAL (XEXP (XEXP (arg->stack_slot, 0), 1));
4312 else
4313 lower_bound = 0;
51bbfa0c 4314
f73ad30e 4315 upper_bound = lower_bound + arg->size.constant;
51bbfa0c
RS
4316#endif
4317
f73ad30e
JH
4318 for (i = lower_bound; i < upper_bound; i++)
4319 if (stack_usage_map[i]
4320 /* Don't store things in the fixed argument area at this point;
4321 it has already been saved. */
4322 && i > reg_parm_stack_space)
4323 break;
51bbfa0c 4324
f73ad30e 4325 if (i != upper_bound)
51bbfa0c 4326 {
f73ad30e
JH
4327 /* We need to make a save area. See what mode we can make it. */
4328 enum machine_mode save_mode
4329 = mode_for_size (arg->size.constant * BITS_PER_UNIT, MODE_INT, 1);
4330 rtx stack_area
4331 = gen_rtx_MEM (save_mode,
4332 memory_address (save_mode,
4333 XEXP (arg->stack_slot, 0)));
4334
4335 if (save_mode == BLKmode)
4336 {
4337 arg->save_area = assign_stack_temp (BLKmode,
4338 arg->size.constant, 0);
4339 MEM_SET_IN_STRUCT_P (arg->save_area,
4340 AGGREGATE_TYPE_P (TREE_TYPE
f725a3ec 4341 (arg->tree_value)));
f73ad30e
JH
4342 preserve_temp_slots (arg->save_area);
4343 emit_block_move (validize_mem (arg->save_area), stack_area,
4344 GEN_INT (arg->size.constant),
19caa751 4345 PARM_BOUNDARY);
f73ad30e
JH
4346 }
4347 else
4348 {
4349 arg->save_area = gen_reg_rtx (save_mode);
4350 emit_move_insn (arg->save_area, stack_area);
4351 }
51bbfa0c
RS
4352 }
4353 }
f73ad30e
JH
4354 /* Now that we have saved any slots that will be overwritten by this
4355 store, mark all slots this store will use. We must do this before
4356 we actually expand the argument since the expansion itself may
4357 trigger library calls which might need to use the same stack slot. */
4358 if (argblock && ! variable_size && arg->stack)
4359 for (i = lower_bound; i < upper_bound; i++)
4360 stack_usage_map[i] = 1;
51bbfa0c 4361 }
b564df06 4362
51bbfa0c
RS
4363 /* If this isn't going to be placed on both the stack and in registers,
4364 set up the register and number of words. */
4365 if (! arg->pass_on_stack)
4366 reg = arg->reg, partial = arg->partial;
4367
4368 if (reg != 0 && partial == 0)
4369 /* Being passed entirely in a register. We shouldn't be called in
4370 this case. */
4371 abort ();
4372
4ab56118
RK
4373 /* If this arg needs special alignment, don't load the registers
4374 here. */
4375 if (arg->n_aligned_regs != 0)
4376 reg = 0;
f725a3ec 4377
4ab56118 4378 /* If this is being passed partially in a register, we can't evaluate
51bbfa0c
RS
4379 it directly into its stack slot. Otherwise, we can. */
4380 if (arg->value == 0)
d64f5a78 4381 {
d64f5a78
RS
4382 /* stack_arg_under_construction is nonzero if a function argument is
4383 being evaluated directly into the outgoing argument list and
4384 expand_call must take special action to preserve the argument list
4385 if it is called recursively.
4386
4387 For scalar function arguments stack_usage_map is sufficient to
4388 determine which stack slots must be saved and restored. Scalar
4389 arguments in general have pass_on_stack == 0.
4390
4391 If this argument is initialized by a function which takes the
4392 address of the argument (a C++ constructor or a C function
4393 returning a BLKmode structure), then stack_usage_map is
4394 insufficient and expand_call must push the stack around the
4395 function call. Such arguments have pass_on_stack == 1.
4396
4397 Note that it is always safe to set stack_arg_under_construction,
4398 but this generates suboptimal code if set when not needed. */
4399
4400 if (arg->pass_on_stack)
4401 stack_arg_under_construction++;
f73ad30e 4402
3a08477a
RK
4403 arg->value = expand_expr (pval,
4404 (partial
4405 || TYPE_MODE (TREE_TYPE (pval)) != arg->mode)
4406 ? NULL_RTX : arg->stack,
e5d70561 4407 VOIDmode, 0);
1efe6448
RK
4408
4409 /* If we are promoting object (or for any other reason) the mode
4410 doesn't agree, convert the mode. */
4411
7373d92d
RK
4412 if (arg->mode != TYPE_MODE (TREE_TYPE (pval)))
4413 arg->value = convert_modes (arg->mode, TYPE_MODE (TREE_TYPE (pval)),
4414 arg->value, arg->unsignedp);
1efe6448 4415
d64f5a78
RS
4416 if (arg->pass_on_stack)
4417 stack_arg_under_construction--;
d64f5a78 4418 }
51bbfa0c
RS
4419
4420 /* Don't allow anything left on stack from computation
4421 of argument to alloca. */
f8a097cd 4422 if (flags & ECF_MAY_BE_ALLOCA)
51bbfa0c
RS
4423 do_pending_stack_adjust ();
4424
4425 if (arg->value == arg->stack)
7815214e 4426 {
c5c76735 4427 /* If the value is already in the stack slot, we are done. */
7d384cc0 4428 if (current_function_check_memory_usage && GET_CODE (arg->stack) == MEM)
7815214e 4429 {
ebb1b59a
BS
4430 emit_library_call (chkr_set_right_libfunc, LCT_CONST_MAKE_BLOCK,
4431 VOIDmode, 3, XEXP (arg->stack, 0), Pmode,
7d384cc0 4432 ARGS_SIZE_RTX (arg->size),
7815214e 4433 TYPE_MODE (sizetype),
956d6950
JL
4434 GEN_INT (MEMORY_USE_RW),
4435 TYPE_MODE (integer_type_node));
7815214e
RK
4436 }
4437 }
1efe6448 4438 else if (arg->mode != BLKmode)
51bbfa0c
RS
4439 {
4440 register int size;
4441
4442 /* Argument is a scalar, not entirely passed in registers.
4443 (If part is passed in registers, arg->partial says how much
4444 and emit_push_insn will take care of putting it there.)
f725a3ec 4445
51bbfa0c
RS
4446 Push it, and if its size is less than the
4447 amount of space allocated to it,
4448 also bump stack pointer by the additional space.
4449 Note that in C the default argument promotions
4450 will prevent such mismatches. */
4451
1efe6448 4452 size = GET_MODE_SIZE (arg->mode);
51bbfa0c
RS
4453 /* Compute how much space the push instruction will push.
4454 On many machines, pushing a byte will advance the stack
4455 pointer by a halfword. */
4456#ifdef PUSH_ROUNDING
4457 size = PUSH_ROUNDING (size);
4458#endif
4459 used = size;
4460
4461 /* Compute how much space the argument should get:
4462 round up to a multiple of the alignment for arguments. */
1efe6448 4463 if (none != FUNCTION_ARG_PADDING (arg->mode, TREE_TYPE (pval)))
51bbfa0c
RS
4464 used = (((size + PARM_BOUNDARY / BITS_PER_UNIT - 1)
4465 / (PARM_BOUNDARY / BITS_PER_UNIT))
4466 * (PARM_BOUNDARY / BITS_PER_UNIT));
4467
4468 /* This isn't already where we want it on the stack, so put it there.
4469 This can either be done with push or copy insns. */
e5e809f4
JL
4470 emit_push_insn (arg->value, arg->mode, TREE_TYPE (pval), NULL_RTX, 0,
4471 partial, reg, used - size, argblock,
4fc026cd
CM
4472 ARGS_SIZE_RTX (arg->offset), reg_parm_stack_space,
4473 ARGS_SIZE_RTX (arg->alignment_pad));
51bbfa0c
RS
4474 }
4475 else
4476 {
4477 /* BLKmode, at least partly to be pushed. */
4478
4479 register int excess;
4480 rtx size_rtx;
4481
4482 /* Pushing a nonscalar.
4483 If part is passed in registers, PARTIAL says how much
4484 and emit_push_insn will take care of putting it there. */
4485
4486 /* Round its size up to a multiple
4487 of the allocation unit for arguments. */
4488
4489 if (arg->size.var != 0)
4490 {
4491 excess = 0;
4492 size_rtx = ARGS_SIZE_RTX (arg->size);
4493 }
4494 else
4495 {
51bbfa0c
RS
4496 /* PUSH_ROUNDING has no effect on us, because
4497 emit_push_insn for BLKmode is careful to avoid it. */
0cf91217 4498 excess = (arg->size.constant - int_size_in_bytes (TREE_TYPE (pval))
51bbfa0c 4499 + partial * UNITS_PER_WORD);
e4f93898 4500 size_rtx = expr_size (pval);
51bbfa0c
RS
4501 }
4502
4c6b3b2a
JJ
4503 if ((flags & ECF_SIBCALL) && GET_CODE (arg->value) == MEM)
4504 {
4505 /* emit_push_insn might not work properly if arg->value and
4506 argblock + arg->offset areas overlap. */
4507 rtx x = arg->value;
4508 int i = 0;
4509
4510 if (XEXP (x, 0) == current_function_internal_arg_pointer
4511 || (GET_CODE (XEXP (x, 0)) == PLUS
4512 && XEXP (XEXP (x, 0), 0) ==
4513 current_function_internal_arg_pointer
4514 && GET_CODE (XEXP (XEXP (x, 0), 1)) == CONST_INT))
4515 {
4516 if (XEXP (x, 0) != current_function_internal_arg_pointer)
4517 i = INTVAL (XEXP (XEXP (x, 0), 1));
4518
4519 /* expand_call should ensure this */
4520 if (arg->offset.var || GET_CODE (size_rtx) != CONST_INT)
4521 abort ();
4522
4523 if (arg->offset.constant > i)
4524 {
4525 if (arg->offset.constant < i + INTVAL (size_rtx))
4526 sibcall_failure = 1;
4527 }
4528 else if (arg->offset.constant < i)
4529 {
4530 if (i < arg->offset.constant + INTVAL (size_rtx))
4531 sibcall_failure = 1;
4532 }
4533 }
4534 }
4535
1efe6448 4536 emit_push_insn (arg->value, arg->mode, TREE_TYPE (pval), size_rtx,
19caa751
RK
4537 TYPE_ALIGN (TREE_TYPE (pval)), partial, reg, excess,
4538 argblock, ARGS_SIZE_RTX (arg->offset),
4fc026cd
CM
4539 reg_parm_stack_space,
4540 ARGS_SIZE_RTX (arg->alignment_pad));
51bbfa0c
RS
4541 }
4542
51bbfa0c 4543 /* Unless this is a partially-in-register argument, the argument is now
f725a3ec 4544 in the stack.
51bbfa0c
RS
4545
4546 ??? Note that this can change arg->value from arg->stack to
4547 arg->stack_slot and it matters when they are not the same.
4548 It isn't totally clear that this is correct in all cases. */
4549 if (partial == 0)
3b917a55 4550 arg->value = arg->stack_slot;
51bbfa0c
RS
4551
4552 /* Once we have pushed something, pops can't safely
4553 be deferred during the rest of the arguments. */
4554 NO_DEFER_POP;
4555
4556 /* ANSI doesn't require a sequence point here,
4557 but PCC has one, so this will avoid some problems. */
4558 emit_queue ();
4559
db907e7b
RK
4560 /* Free any temporary slots made in processing this argument. Show
4561 that we might have taken the address of something and pushed that
4562 as an operand. */
4563 preserve_temp_slots (NULL_RTX);
51bbfa0c 4564 free_temp_slots ();
cc79451b 4565 pop_temp_slots ();
4c6b3b2a
JJ
4566
4567 return sibcall_failure;
51bbfa0c 4568}